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2024AC01      Phys.Rev. C 109, 014911 (2024)

S.Acharya, D.Adamova, G.Aglieri Rinella, M.Agnello, N.Agrawal, Z.Ahammed, S.Ahmad, S.U.Ahn, I.Ahuja, A.Akindinov, M.Al-Turany, D.Aleksandrov, B.Alessandro, H.M.Alfanda, R.Alfaro Molina, B.Ali, A.Alici, N.Alizadehvandchali, A.Alkin, J.Alme, G.Alocco, T.Alt, A.R.Altamura, I.Altsybeev, J.R.Alvarado, M.N.Anaam, C.Andrei, N.Andreou, A.Andronic, V.Anguelov, F.Antinori, P.Antonioli, N.Apadula, L.Aphecetche, H.Appelshauser, C.Arata, S.Arcelli, M.Aresti, R.Arnaldi, J.G.M.C.A.Arneiro, I.C.Arsene, M.Arslandok, A.Augustinus, R.Averbeck, M.D.Azmi, H.Baba, A.Badala, J.Bae, Y.W.Baek, X.Bai, R.Bailhache, Y.Bailung, A.Balbino, A.Baldisseri, B.Balis, D.Banerjee, Z.Banoo, R.Barbera, F.Barile, L.Barioglio, M.Barlou, B.Barman, G.G.Barnafoldi, L.S.Barnby, V.Barret, L.Barreto, C.Bartels, K.Barth, E.Bartsch, N.Bastid, S.Basu, G.Batigne, D.Battistini, B.Batyunya, D.Bauri, J.L.Bazo Alba, I.G.Bearden, C.Beattie, P.Becht, D.Behera, I.Belikov, A.D.C.Bell Hechavarria, F.Bellini, R.Bellwied, S.Belokurova, Y.A.V.Beltran, G.Bencedi, S.Beole, Y.Berdnikov, A.Berdnikova, L.Bergmann, M.G.Besoiu, L.Betev, P.P.Bhaduri, A.Bhasin, M.A.Bhat, B.Bhattacharjee, L.Bianchi, N.Bianchi, J.Bielcik, J.Bielcikova, J.Biernat, A.P.Bigot, A.Bilandzic, G.Biro, S.Biswas, N.Bize, J.T.Blair, D.Blau, M.B.Blidaru, N.Bluhme, C.Blume, G.Boca, F.Bock, T.Bodova, A.Bogdanov, S.Boi, J.Bok, L.Boldizsar, M.Bombara, P.M.Bond, G.Bonomi, H.Borel, A.Borissov, A.G.Borquez Carcamo, H.Bossi, E.Botta, Y.E.M.Bouziani, L.Bratrud, P.Braun-Munzinger, M.Bregant, M.Broz, G.E.Bruno, M.D.Buckland, D.Budnikov, H.Buesching, S.Bufalino, P.Buhler, N.Burmasov, Z.Buthelezi, A.Bylinkin, S.A.Bysiak, M.Cai, H.Caines, A.Caliva, E.Calvo Villar, J.M.M.Camacho, P.Camerini, F.D.M.Canedo, S.L.Cantway, M.Carabas, A.A.Carballo, F.Carnesecchi, R.Caron, L.A.D.Carvalho, J.Castillo Castellanos, F.Catalano, C.Ceballos Sanchez, I.Chakaberia, P.Chakraborty, S.Chandra, S.Chapeland, M.Chartier, S.Chattopadhyay, S.Chattopadhyay, T.Cheng, C.Cheshkov, B.Cheynis, V.Chibante Barroso, D.D.Chinellato, E.S.Chizzali, J.Cho, S.Cho, P.Chochula, D.Choudhury, P.Christakoglou, C.H.Christensen, P.Christiansen, T.Chujo, M.Ciacco, C.Cicalo, F.Cindolo, M.R.Ciupek, G.Clai, F.Colamaria, J.S.Colburn, D.Colella, M.Colocci, M.Concas, G.Conesa Balbastre, Z.Conesa del Valle, G.Contin, J.G.Contreras, M.L.Coquet, P.Cortese, M.R.Cosentino, F.Costa, S.Costanza, C.Cot, J.Crkovska, P.Crochet, R.Cruz-Torres, P.Cui, A.Dainese, M.C.Danisch, A.Danu, P.Das, P.Das, S.Das, A.R.Dash, S.Dash, A.De Caro, G.de Cataldo, J.de Cuveland, A.De Falco, D.De Gruttola, N.De Marco, C.De Martin, S.De Pasquale, R.Deb, R.Del Grande, L.Dello Stritto, W.Deng, P.Dhankher, D.Di Bari, A.Di Mauro, B.Diab, R.A.Diaz, T.Dietel, Y.Ding, J.Ditzel, R.Divia, D.U.Dixit, O.Djuvsland, U.Dmitrieva, A.Dobrin, B.Donigus, J.M.Dubinski, A.Dubla, S.Dudi, P.Dupieux, M.Durkac, N.Dzalaiova, T.M.Eder, R.J.Ehlers, F.Eisenhut, R.Ejima, D.Elia, B.Erazmus, F.Ercolessi, B.Espagnon, G.Eulisse, D.Evans, S.Evdokimov, L.Fabbietti, M.Faggin, J.Faivre, F.Fan, W.Fan, A.Fantoni, M.Fasel, P.Fecchio, A.Feliciello, G.Feofilov, A.Fernandez Tellez, L.Ferrandi, M.B.Ferrer, A.Ferrero, C.Ferrero, A.Ferretti, V.J.G.Feuillard, V.Filova, D.Finogeev, F.M.Fionda, E.Flatland, F.Flor, A.N.Flores, S.Foertsch, I.Fokin, S.Fokin, E.Fragiacomo, E.Frajna, U.Fuchs, N.Funicello, C.Furget, A.Furs, T.Fusayasu, J.J.Gaardhoje, M.Gagliardi, A.M.Gago, T.Gahlaut, C.D.Galvan, D.R.Gangadharan, P.Ganoti, C.Garabatos, T.Garcia Chavez, E.Garcia-Solis, C.Gargiulo, P.Gasik, A.Gautam, M.B.Gay Ducati, M.Germain, A.Ghimouz, C.Ghosh, M.Giacalone, G.Gioachin, P.Giubellino, P.Giubilato, A.M.C.Glaenzer, P.Glassel, E.Glimos, D.J.Q.Goh, V.Gonzalez, M.Gorgon, K.Goswami, S.Gotovac, V.Grabski, L.K.Graczykowski, E.Grecka, A.Grelli, C.Grigoras, V.Grigoriev, S.Grigoryan, F.Grosa, J.F.Grosse-Oetringhaus, R.Grosso, D.Grund, N.A.Grunwald, G.G.Guardiano, R.Guernane, M.Guilbaud, K.Gulbrandsen, T.Gundem, T.Gunji, W.Guo, A.Gupta, R.Gupta, R.Gupta, K.Gwizdziel, L.Gyulai, C.Hadjidakis, F.U.Haider, S.Haidlova, H.Hamagaki, A.Hamdi, Y.Han, B.G.Hanley, R.Hannigan, J.Hansen, M.R.Haque, J.W.Harris, A.Harton, H.Hassan, D.Hatzifotiadou, P.Hauer, L.B.Havener, S.T.Heckel, E.Hellbar, H.Helstrup, M.Hemmer, T.Herman, G.Herrera Corral, F.Herrmann, S.Herrmann, K.F.Hetland, B.Heybeck, H.Hillemanns, B.Hippolyte, F.W.Hoffmann, B.Hofman, G.H.Hong, M.Horst, A.Horzyk, Y.Hou, P.Hristov, C.Hughes, P.Huhn, L.M.Huhta, T.J.Humanic, A.Hutson, D.Hutter, R.Ilkaev, H.Ilyas, M.Inaba, G.M.Innocenti, M.Ippolitov, A.Isakov, T.Isidori, M.S.Islam, M.Ivanov, M.Ivanov, V.Ivanov, K.E.Iversen, M.Jablonski, B.Jacak, N.Jacazio, P.M.Jacobs, S.Jadlovska, J.Jadlovsky, S.Jaelani, C.Jahnke, M.J.Jakubowska, M.A.Janik, T.Janson, S.Ji, S.Jia, A.A.P.Jimenez, F.Jonas, D.M.Jones, J.M.Jowett, J.Jung, M.Jung, A.Junique, A.Jusko, M.J.Kabus, J.Kaewjai, P.Kalinak, A.S.Kalteyer, A.Kalweit, V.Kaplin, A.Karasu Uysal, D.Karatovic, O.Karavichev, T.Karavicheva, P.Karczmarczyk, E.Karpechev, U.Kebschull, R.Keidel, D.L.D.Keijdener, M.Keil, B.Ketzer, S.S.Khade, A.M.Khan, S.Khan, A.Khanzadeev, Y.Kharlov, A.Khatun, A.Khuntia, B.Kileng, B.Kim, C.Kim, D.J.Kim, E.J.Kim, J.Kim, J.S.Kim, J.Kim, J.Kim, M.Kim, S.Kim, T.Kim, K.Kimura, S.Kirsch, I.Kisel, S.Kiselev, A.Kisiel, J.P.Kitowski, J.L.Klay, J.Klein, S.Klein, C.Klein-Bosing, M.Kleiner, T.Klemenz, A.Kluge, A.G.Knospe, C.Kobdaj, T.Kollegger, A.Kondratyev, N.Kondratyeva, E.Kondratyuk, J.Konig, S.A.Konigstorfer, P.J.Konopka, G.Kornakov, M.Korwieser, S.D.Koryciak, A.Kotliarov, V.Kovalenko, M.Kowalski, V.Kozhuharov, I.Kralik, A.Kravcakova, L.Krcal, M.Krivda, F.Krizek, K.Krizkova Gajdosova, M.Kroesen, M.Kruger, D.M.Krupova, E.Kryshen, V.Kucera, C.Kuhn, P.G.Kuijer, T.Kumaoka, D.Kumar, L.Kumar, N.Kumar, S.Kumar, S.Kundu, P.Kurashvili, A.Kurepin, A.B.Kurepin, A.Kuryakin, S.Kushpil, M.J.Kweon, Y.Kwon, S.L.La Pointe, P.La Rocca, A.Lakrathok, M.Lamanna, A.R.Landou, R.Langoy, P.Larionov, E.Laudi, L.Lautner, R.Lavicka, R.Lea, H.Lee, I.Legrand, G.Legras, J.Lehrbach, T.M.Lelek, R.C.Lemmon, I.Leon Monzon, M.M.Lesch, E.D.Lesser, P.Levai, X.Li, J.Lien, R.Lietava, I.Likmeta, B.Lim, S.H.Lim, V.Lindenstruth, A.Lindner, C.Lippmann, D.H.Liu, J.Liu, G.S.S.Liveraro, I.M.Lofnes, C.Loizides, S.Lokos, J.Lomker, P.Loncar, X.Lopez, E.Lopez Torres, P.Lu, F.V.Lugo, J.R.Luhder, M.Lunardon, G.Luparello, Y.G.Ma, M.Mager, A.Maire, E.M.Majerz, M.V.Makariev, M.Malaev, G.Malfattore, N.M.Malik, Q.W.Malik, S.K.Malik, L.Malinina, D.Mallick, N.Mallick, G.Mandaglio, S.K.Mandal, V.Manko, F.Manso, V.Manzari, Y.Mao, R.W.Marcjan, G.V.Margagliotti, A.Margotti, A.Marin, C.Markert, P.Martinengo, M.I.Martinez, G.Martinez Garcia, M.P.P.Martins, S.Masciocchi, M.Masera, A.Masoni, L.Massacrier, O.Massen, A.Mastroserio, O.Matonoha, S.Mattiazzo, A.Matyja, C.Mayer, A.L.Mazuecos, F.Mazzaschi, M.Mazzilli, J.E.Mdhluli, Y.Melikyan, A.Menchaca-Rocha, J.E.M.Mendez, E.Meninno, A.S.Menon, M.Meres, S.Mhlanga, Y.Miake, L.Micheletti, D.L.Mihaylov, K.Mikhaylov, A.N.Mishra, D.Miskowiec, A.Modak, B.Mohanty, M.Mohisin Khan, M.A.Molander, S.Monira, C.Mordasini, D.A.Moreira De Godoy, I.Morozov, A.Morsch, T.Mrnjavac, V.Muccifora, S.Muhuri, J.D.Mulligan, A.Mulliri, M.G.Munhoz, R.H.Munzer, H.Murakami, S.Murray, L.Musa, J.Musinsky, J.W.Myrcha, B.Naik, A.I.Nambrath, B.K.Nandi, R.Nania, E.Nappi, A.F.Nassirpour, A.Nath, C.Nattrass, M.N.Naydenov, A.Neagu, A.Negru, L.Nellen, R.Nepeivoda, S.Nese, G.Neskovic, N.Nicassio, B.S.Nielsen, E.G.Nielsen, S.Nikolaev, S.Nikulin, V.Nikulin, F.Noferini, S.Noh, P.Nomokonov, J.Norman, N.Novitzky, P.Nowakowski, A.Nyanin, J.Nystrand, M.Ogino, S.Oh, A.Ohlson, V.A.Okorokov, J.Oleniacz, A.C.Oliveira Da Silva, A.Onnerstad, C.Oppedisano, A.Ortiz Velasquez, J.Otwinowski, M.Oya, K.Oyama, Y.Pachmayer, S.Padhan, D.Pagano, G.Paic, S.Paisano-Guzman, A.Palasciano, S.Panebianco, H.Park, H.Park, J.Park, J.E.Parkkila, Y.Patley, R.N.Patra, B.Paul, H.Pei, T.Peitzmann, X.Peng, M.Pennisi, S.Perciballi, D.Peresunko, G.M.Perez, Y.Pestov, V.Petrov, M.Petrovici, R.P.Pezzi, S.Piano, M.Pikna, P.Pillot, O.Pinazza, L.Pinsky, C.Pinto, S.Pisano, M.Ploskon, M.Planinic, F.Pliquett, M.G.Poghosyan, B.Polichtchouk, S.Politano, N.Poljak, A.Pop, S.Porteboeuf-Houssais, V.Pozdniakov, I.Y.Pozos, K.K.Pradhan, S.K.Prasad, S.Prasad, R.Preghenella, F.Prino, C.A.Pruneau, I.Pshenichnov, M.Puccio, S.Pucillo, Z.Pugelova, S.Qiu, L.Quaglia, S.Ragoni, A.Rai, A.Rakotozafindrabe, L.Ramello, F.Rami, T.A.Rancien, M.Rasa, S.S.Rasanen, R.Rath, M.P.Rauch, I.Ravasenga, K.F.Read, C.Reckziegel, A.R.Redelbach, K.Redlich, C.A.Reetz, H.D.Regules-Medel, A.Rehman, F.Reidt, H.A.Reme-Ness, Z.Rescakova, K.Reygers, A.Riabov, V.Riabov, R.Ricci, M.Richter, A.A.Riedel, W.Riegler, A.G.Riffero, C.Ristea, M.V.Rodriguez, M.Rodriguez Cahuantzi, S.A.Rodriguez Ramirez, K.Roed, R.Rogalev, E.Rogochaya, T.S.Rogoschinski, D.Rohr, D.Rohrich, P.F.Rojas, S.Rojas Torres, P.S.Rokita, G.Romanenko, F.Ronchetti, A.Rosano, E.D.Rosas, K.Roslon, A.Rossi, A.Roy, S.Roy, N.Rubini, D.Ruggiano, R.Rui, P.G.Russek, R.Russo, A.Rustamov, E.Ryabinkin, Y.Ryabov, A.Rybicki, H.Rytkonen, J.Ryu, W.Rzesa, O.A.M.Saarimaki, S.Sadhu, S.Sadovsky, J.Saetre, K.Safarik, P.Saha, S.K.Saha, S.Saha, B.Sahoo, B.Sahoo, R.Sahoo, S.Sahoo, D.Sahu, P.K.Sahu, J.Saini, K.Sajdakova, S.Sakai, M.P.Salvan, S.Sambyal, D.Samitz, I.Sanna, T.B.Saramela, P.Sarma, V.Sarritzu, V.M.Sarti, M.H.P.Sas, S.Sawan, J.Schambach, H.S.Scheid, C.Schiaua, R.Schicker, F.Schlepper, A.Schmah, C.Schmidt, H.R.Schmidt, M.O.Schmidt, M.Schmidt, N.V.Schmidt, A.R.Schmier, R.Schotter, A.Schroter, J.Schukraft, K.Schweda, G.Scioli, E.Scomparin, J.E.Seger, Y.Sekiguchi, D.Sekihata, M.Selina, I.Selyuzhenkov, S.Senyukov, J.J.Seo, D.Serebryakov, L.Serksnyte, A.Sevcenco, T.J.Shaba, A.Shabetai, R.Shahoyan, A.Shangaraev, A.Sharma, B.Sharma, D.Sharma, H.Sharma, M.Sharma, S.Sharma, S.Sharma, U.Sharma, A.Shatat, O.Sheibani, K.Shigaki, M.Shimomura, J.Shin, S.Shirinkin, Q.Shou, Y.Sibiriak, S.Siddhanta, T.Siemiarczuk, T.F.Silva, D.Silvermyr, T.Simantathammakul, R.Simeonov, B.Singh, B.Singh, K.Singh, R.Singh, R.Singh, R.Singh, S.Singh, V.K.Singh, V.Singhal, T.Sinha, B.Sitar, M.Sitta, T.B.Skaali, G.Skorodumovs, M.Slupecki, N.Smirnov, R.J.M.Snellings, E.H.Solheim, J.Song, C.Sonnabend, F.Soramel, A.B.Soto-hernandez, R.Spijkers, I.Sputowska, J.Staa, J.Stachel, I.Stan, P.J.Steffanic, S.F.Stiefelmaier, D.Stocco, I.Storehaug, P.Stratmann, S.Strazzi, A.Sturniolo, C.P.Stylianidis, A.A.P.Suaide, C.Suire, M.Sukhanov, M.Suljic, R.Sultanov, V.Sumberia, S.Sumowidagdo, S.Swain, I.Szarka, M.Szymkowski, S.F.Taghavi, G.Taillepied, J.Takahashi, G.J.Tambave, S.Tang, Z.Tang, J.D.Tapia Takaki, N.Tapus, L.A.Tarasovicova, M.G.Tarzila, G.F.Tassielli, A.Tauro, A.Tavira Garcia, G.Tejeda Munoz, A.Telesca, L.Terlizzi, C.Terrevoli, S.Thakur, D.Thomas, A.Tikhonov, N.Tiltmann, A.R.Timmins, M.Tkacik, T.Tkacik, A.Toia, R.Tokumoto, K.Tomohiro, N.Topilskaya, M.Toppi, T.Tork, P.V.Torres, V.V.Torres, A.G.Torres Ramos, A.Trifiro, A.S.Triolo, S.Tripathy, T.Tripathy, S.Trogolo, V.Trubnikov, W.H.Trzaska, T.P.Trzcinski, A.Tumkin, R.Turrisi, T.S.Tveter, K.Ullaland, B.Ulukutlu, A.Uras, G.L.Usai, M.Vala, N.Valle, L.V.R.van Doremalen, M.van Leeuwen, C.A.van Veen, R.J.G.van Weelden, P.Vande Vyvre, D.Varga, Z.Varga, M.Vasileiou, A.Vasiliev, O.Vazquez Doce, O.Vazquez Rueda, V.Vechernin, E.Vercellin, S.Vergara Limon, R.Verma, L.Vermunt, R.Vertesi, M.Verweij, L.Vickovic, Z.Vilakazi, O.Villalobos Baillie, A.Villani, A.Vinogradov, T.Virgili, M.M.O.Virta, V.Vislavicius, A.Vodopyanov, B.Volkel, M.A.Volkl, K.Voloshin, S.A.Voloshin, G.Volpe, B.von Haller, I.Vorobyev, N.Vozniuk, J.Vrlakova, J.Wan, C.Wang, D.Wang, Y.Wang, Y.Wang, A.Wegrzynek, F.T.Weiglhofer, S.C.Wenzel, J.P.Wessels, J.Wiechula, J.Wikne, G.Wilk, J.Wilkinson, G.A.Willems, B.Windelband, M.Winn, J.R.Wright, W.Wu, Y.Wu, R.Xu, A.Yadav, A.K.Yadav, S.Yalcin, Y.Yamaguchi, S.Yang, S.Yano, Z.Yin, I.-K.Yoo, J.H.Yoon, H.Yu, S.Yuan, A.Yuncu, V.Zaccolo, C.Zampolli, F.Zanone, N.Zardoshti, A.Zarochentsev, P.Zavada, N.Zaviyalov, M.Zhalov, B.Zhang, C.Zhang, L.Zhang, S.Zhang, X.Zhang, Y.Zhang, Z.Zhang, M.Zhao, V.Zherebchevskii, Y.Zhi, D.Zhou, Y.Zhou, J.Zhu, Y.Zhu, S.C.Zugravel, N.Zurlo

System-size dependence of the hadronic rescattering effect at energies available at the CERN Large Hadron Collider

doi: 10.1103/PhysRevC.109.014911
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2022GO16      Phys.Atomic Nuclei 85, 785 (2022)

S.A.Goncharov, A.S.Demyanova, A.N.Danilov, V.I.Starastsin, T.L.Belyaeva, W.Trzaska, N.Burtebayev, M.Nasurlla, Yu.B.Gurov

Investigation of Excited States of the 13C Nucleus in Alpha-Particle Scattering

NUCLEAR REACTIONS 13C(α, α'), E<90 MeV; analyzed available data; deduced parameters of a semimicroscopic potential on the basis of the dispersive optical model by the distorted-wave Born approximation, the presence of a neutron halo.

doi: 10.1134/S1063778823010210
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2022KO03      Phys.Rev. C 105, 014607 (2022)

E.M.Kozulin, G.N.Knyazheva, I.M.Itkis, M.G.Itkis, Y.S.Mukhamejanov, A.A.Bogachev, K.V.Novikov, V.V.Kirakosyan, D.Kumar, T.Banerjee, M.Cheralu, M.Maiti, R.Prajapat, R.Kumar, G.Sarkar, W.H.Trzaska, A.N.Andreyev, I.M.Harca, A.Mitu, E.Vardaci

Fission of 180, 182, 183Hg* and 178Pt* nuclei at intermediate excitation energies

NUCLEAR REACTIONS 142Nd(36Ar, F)178Pt*, E=158, 169, 181 MeV; 144Sm(36Ar, F)180Hg*, E=158, 181 MeV; 142,143Nd(40Ca, F)182Hg*/183Hg*, E=158, 169, 181 MeV; measured binary reaction products in coincidence mode using the double-arm time-of-flight spectrometer CORSET, consisting of a compact start detector and a position-sensitive stop detector of microchannel plates at the U400 cyclotron Flerov laboratory of Nuclear Reactions, Dubna; deduced mass-energy distributions of fission fragments at energies near and above the Coulomb barrier, mass-total kinetic energy (M-TKE) distribution contours of primary binary fragments, mass yields, fission fragments mass yields, asymmetric fission of preactinide nuclei, existence of well-deformed proton shell at Z≈36 and a less deformed proton shell at Z≈46. Comparison with previous experimental results.

doi: 10.1103/PhysRevC.105.014607
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2021BO22      Phys.Rev. C 104, 024623 (2021)

A.A.Bogachev, E.M.Kozulin, G.N.Knyazheva, I.M.Itkis, M.G.Itkis, K.V.Novikov, D.Kumar, T.Banerjee, I.N.Diatlov, M.Cheralu, V.V.Kirakosyan, Y.S.Mukhamejanov, A.N.Pan, I.V.Pchelintsev, R.S.Tikhomirov, I.V.Vorobiev, M.Maiti, R.Prajapat, R.Kumar, G.Sarkar, W.H.Trzaska, A.N.Andreyev, I.M.Harca, E.Vardaci

Asymmetric and symmetric fission of excited nuclei of 180, 190Hg and 184, 192, 202Pb formed in the reactions with 36Ar and 40, 48Ca ions

NUCLEAR REACTIONS 144Sm(36Ar, X)180Hg*, E=158, 181 MeV; 154Sm(36Ar, X)190Hg*, E=158, 181 MeV; 144Sm(40Ca, X)184Pb*, E=180, 190 MeV; 144Sm(48Ca, X)192Pb*, E=182, 188, 202 MeV; 154Sm(48Ca, X)202Pb*, E=173, 183, 194 MeV; measured binary reaction products in coincidence mode from the excited states of the compound nuclei using the double-arm time-of-flight spectrometer CORSET at the U400 cyclotron facility of Flerov Laboratory of Nuclear Reactions (FLNR), Dubna; deduced mass-total kinetic energy (TKE) distributions of binary fragments, mass and TKE distributions of fission fragments, contributions of symmetric and asymmetric fissions, well deformed proton shell at Z≈36 and less deformed proton shell at Z≈46.

doi: 10.1103/PhysRevC.104.024623
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2021BO23      Bull.Rus.Acad.Sci.Phys. 85, 1080 (2021), Erratum Bull.Rus.Acad.Sci.Phys. 86, 1557(2022)

A.A.Bogachev, E.M.Kozulin, G.N.Knyazheva, I.M.Itkis, K.V.Novikov, T.Banerjee, M.Cheralu, M.G.Itkis, E.Mukhamedzhanov, D.Kumar, A.Pan, I.V.Pchelintsev, I.V.Vorobev, W.H.Trzaska, E.Vardaci, A.di Nitto, S.V.Khlebnikov, I.Harka, A.Andreyev

Study of Binary Processes in the Reactions of 36Ar + 144, 154Sm and 68Zn + 112Sn Leading to the Formation of Neutron-Deficient Compound 180, 190Hg Nuclei

NUCLEAR REACTIONS 144Sm(36Ar, X)180Hg, E=158 MeV; 154Sm(36Ar, X)190Hg, E=181 MeV; 112Sn(68Zn, X)180Hg, E=300 MeV; measured reaction products; deduced fission fragment mass yields, energy distributions; deduced asymmetric and symmetric fission.

doi: 10.3103/S1062873821100105
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2021DE19      Eur.Phys.J. A 57, 204 (2021)

A.Demyanova, V.Starastsin, A.Ogloblin, A.Danilov, S.Dmitriev, W.Trzaska, P.Heikkinen, T.Belyaeva, S.Goncharov, V.Maslov, Y.Sobolev, Y.Gurov, B.Chernyshev, N.Burtebaev, D.Janseitov, S.Khlebnikov

The spin-parities of the 13.35 MeV state and high-lying excited states around 20 MeV in 12C nucleus

NUCLEAR REACTIONS 11B(3He, d), E=25 MeV; measured reaction products; deduced σ(θ), energy levels, J, π. Comparison with the DWBA method. K-130 cyclotron at the University of Jyvaskyla.

doi: 10.1140/epja/s10050-021-00515-7
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Data from this article have been entered in the XUNDL database. For more information, click here.


2021GA34      Bull.Rus.Acad.Sci.Phys. 85, 1080 (2021)

E.I.Galkina, E.M.Kozulin, G.N.Knyazheva, I.M.Itkis, A.A.Bogachev, I.N.Diatlov, M.Cheralu, D.Kumar, N.I.Kozulina, K.V.Novikov, A.N.Pan, I.V.Pchelintsev, I.V.Vorobiev, W.H.Trzaska, S.Heinz, B.Lommel, E.Vardaci, S.Spinosa, A.Di Nitto, A.Pulcini, C.Borcea, I.Harca

Investigating Mass-Energy Distributions of Fragments Produced in the 32S + 232Th → 264Sg Reaction at Energies Below and Near the Coulomb Barrier

NUCLEAR REACTIONS 232Th(32S, X)264Sg, E=165, 181, 200 MeV; measured reaction products; deduced mass-energy distributions of fragments, contribution from the quasifission process. CORSET double-arm time-of-flight spectrometer.

doi: 10.3103/S1062873821100154
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2021KO25      Phys.Lett. B 819, 136442 (2021)

E.M.Kozulin, E.Vardaci, W.H.Trzaska, A.A.Bogachev, I.M.Itkis, A.V.Karpov, G.N.Knyazheva, K.V.Novikov

Evidence of quasifission in the 180Hg composite system formed in the 68Zn + 112Sn reaction

NUCLEAR REACTIONS 112Sn(68Zn, X)180Hg, E=300 MeV; measured reaction products; deduced total kinetic energy, σ(θ), yields. K-130 cyclotron, Jyvaskyla University, Finland.

doi: 10.1016/j.physletb.2021.136442
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2021KU32      Bull.Rus.Acad.Sci.Phys. 85, 1479 (2021)

D.Kumar, E.M.Kozulin, G.N.Knyazheva, M.Maiti, I.M.Itkis, A.A.Bogachev, K.V.Novikov, M.Cheralu, T.Banerjee, I.N.Diatlov, N.I.Kozulina, I.V.Pchelintsev, I.V.Vorobiev, A.N.Pan, R.Prajapat, R.Kumar, E.Vardaci, W.H.Trzaska, A.Andreyev, I.M.Harca

Investigation on Competing Fission Modes in 178Pt* Produced by 36Ar + 142Nd Reaction up to High Excitation Energies

NUCLEAR REACTIONS 142Nd(36Ar, X)178Pt, E=158-222 MeV; measured fission products, TOF; deduced mass-energy distributions of binary fission fragments, total kinetic energies, asymmetric and symmetric modes. Comparison with theoretical systematics. The double arm time-of-flight spectrometer CORSET.

doi: 10.3103/S1062873821120194
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2020DE24      JETP Lett. 111, 409 (2020)

A.S.Demyanova, A.N.Danilov, A.A.Ogloblin, V.I.Starastsin, S.V.Dmitriev, W.H.Trzaska, S.A.Goncharov, T.L.Belyaeva, V.A.Maslov, Yu.G.Sobolev, Yu.E.Penionzhkevich, S.V.Khlebnikov, G.P.Tyurin, N.Burtebaev, D.Janseitov, Yu.B.Gurov, J.Louko, V.M.Sergeev

States of the 12N Nucleus with Increased Radii

NUCLEAR REACTIONS 12C(3He, t), E=40 MeV; measured reaction products; deduced σ(θ), rms radii of 12N obtained by the MDM analysis.

doi: 10.1134/S0021364020080020
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2529.


2020DE40      Phys.Rev. C 102, 054612 (2020)

A.S.Demyanova, V.I.Starastsin, A.N.Danilov, A.A.Ogloblin, S.V.Dmitriev, S.A.Goncharov, T.L.Belyaeva, V.A.Maslov, Yu.G.Sobolev, W.Trzaska, P.Heikkinen, G.P.Gurov, N.Burtebaev, D.Janseitov

Possible neutron and proton halo structure in the isobaric analog states of A=12 nuclei

NUCLEAR REACTIONS 11B(3He, d)12C, E=25 MeV from K130 cyclotron of University of Jyvaskyla; measured E(d), I(d), σ(θ) using three sets ofDE-E silicon and Si(Li) detector telescopes. 12C; deduced levels, IAS, J, π, proton halo in the corresponding IASs of 12N from MDM analysis; analyzed a triplet of IASs with isospin T=1 in 12B, 12C, and 12N nuclei and compared their rms radii. Comparison with theoretical calculations in the framework of coupled-reaction channels (CRC) method for direct proton transfer to the bound and unbound states using the code FRESCO.

doi: 10.1103/PhysRevC.102.054612
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2527. Data from this article have been entered in the XUNDL database. For more information, click here.


2020DE42      JETP Lett. 112, 463 (2020)

A.S.Demyanova, A.N.Danilov, A.A.Ogloblin, S.A.Goncharov, T.L.Belyaeva, W.H.Trzaska, V.I.Starastsin

Search for Signs of Neutron and Proton Halos in the Excited Isobaric Analog States of A = 14 Nuclei

NUCLEAR REACTIONS 14C(α, α), E=35 MeV; 13C(3He, d), E=43.6 MeV; 14N(3He, t), E=44.6, 420 MeV; analyzed available data; deduced σ(θ), halo and rms matter radii using ANC and MDM methods.

doi: 10.1134/S0021364020200011
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2020KO09      Eur.Phys.J. A 56, 6 (2020)

E.M.Kozulin, I.M.Harca, E.Vardaci, I.Matea, A.Maj, I.Itkis, G.Knyazheva, K.Novikov, O.Dorvaux, M.Ciemala, S.Brambilla, N.Kozulina, I.V.Kolesov, E.Saveleva, V.V.Kirakosyan, C.Schmitt, C.Borcea, S.Calinescu, C.Petrone, M.Ashaduzzaman, B.DeCanditiis, A.Pulcini, D.Quero, P.Rath, A.di Nitto, G.La Rana, A.Bracco, F.Camera, O.Stezowski, J.Wilson, D.Verney, W.H.Trzaska, for the SPS and the PARIS collaboration

Features of the Fission Fragments Formed in the Heavy Ion induced 32S +197Au reaction near the interaction barrier

doi: 10.1140/epja/s10050-019-00019-5
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2020NO05      Bull.Rus.Acad.Sci.Phys. 84, 495 (2020)

K.V.Novikov, E.M.Kozulin, G.N.Knyazheva, I.M.Itkis, A.V.Karpov, M.G.Itkis, I.N.Diatlov, M.Cheralu, B.Gall, Z.Asfari, N.I.Kozulina, D.Kumar, I.V.Pchelintsev, V.N.Loginov, A.E.Bondarchenko, P.P.Singh, I.V.Vorobiev, S.Heinz, W.H.Trzaska, E.Vardaci, N.Tortorelli, C.Borcea, I.Harca

Formation and Decay of the Composite System Z = 120 in Reactions with Heavy Ions at Energies Near the Coulomb Barrier

doi: 10.3103/S1062873820040206
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2020NO09      Phys.Rev. C 102, 044605 (2020)

K.V.Novikov, E.M.Kozulin, G.N.Knyazheva, I.M.Itkis, M.G.Itkis, A.A.Bogachev, I.N.Diatlov, M.Cheralu, D.Kumar, N.I.Kozulina, A.N.Pan, I.V.Pchelintsev, I.V.Vorobiev, W.H.Trzaska, S.Heinz, H.M.Devaraja, B.Lommel, E.Vardaci, S.Spinosa, A.Di Nitto, A.Pulcini, S.V.Khlebnikov, P.P.Singh, Ru.N.Sahoo, B.Gall, Z.Asfari, C.Borcea, I.Harca, D.M.Filipescu

Investigation of fusion probabilities in the reactions with 52, 54Cr, 64Ni, and 68Zn ions leading to the formation of Z = 120 superheavy composite systems

NUCLEAR REACTIONS 248Cm(52Cr, X)300120*, E=290, 304-MeV; 248Cm(54Cr, X)302120*, E=296 MeV; 232Th(68Zn, X)300120*, E=335 MeV; measured binary reaction products in coincidence by the double-arm time-of-flight spectrometer CORSET, the first two reactions using 248Cm target at the U-400 cyclotron facility of FLNR-Dubna, and the experiment with 232Th target at the University of Jyvaskyla K-130 cyclotron facility; deduced yield and TKE matrices of binary fragments as functions of mass and energy, capture cross sections as a function of effective fissility parameter, excitation energy of primary fragments as function of fragment mass, contributions of symmetric fragments to the capture cross sections, fusion probability as function of the mean fissility parameter, and production σ for the formation of Z=120 superheavy nucleus (SHN). 238U(64Ni, X)302120*, E=335 MeV; compared results of this experiment, reported in 2010Ko16, at Jyvaskyla with the data in the present experiments. 248Cm(54Cr, X) reaction determined to be the most favorable for the production of Z=120 element.

doi: 10.1103/PhysRevC.102.044605
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2019CH42      JETP Lett. 110, 97 (2019)

B.A.Chernyshev, A.S.Demyanova, S.A.Goncharov, Yu.B.Gurov, S.V.Lapushkin, A.A.Ogloblin, V.G.Sandukovsky, W.H.Trzaska

Neutron Structure of the Ground State of 7He

doi: 10.1134/s0021364019140030
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2019KI08      Phys.Rev.Lett. 123, 262701 (2019)

O.S.Kirsebom, S.Jones, D.F.Stromberg, G.Martinez-Pinedo, K.Langanke, F.K.Ropke, B.A.Brown, T.Eronen, H.O.U.Fynbo, M.Hukkanen, A.Idini, A.Jokinen, A.Kankainen, J.Kostensalo, I.Moore, H.Moller, S.T.Ohlmann, H.Penttila, K.Riisager, S.Rinta-Antila, P.C.Srivastava, J.Suhonen, W.H.Trzaska, J.Aysto

Discovery of an Exceptionally Strong β-Decay Transition of 20F and Implications for the Fate of Intermediate-Mass Stars

RADIOACTIVITY 20F(β-) [from 19F(d, X), E=6 MeV]; measured decay products, Eβ, Iβ; deduced transition strength.

doi: 10.1103/PhysRevLett.123.262701
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Data from this article have been entered in the XUNDL database. For more information, click here.


2019MA45      Eur.Phys.J. A 55, 88 (2019)

T.Malkiewicz, G.Lhersonneau, M.Fadil, U.Jacobsson, P.Jones, K.Helariutta, P.Karvonen, S.Khlebnikov, W.H.Trzaska

Production of a 15C radioactive ion beam based on 18O(n, α)

NUCLEAR REACTIONS 18O(n, α)15C, E=fast[target 18O enriched water]; measured En, In, activation Eγ, Iγ; deduced σ.

doi: 10.1140/epja/i2019-12761-y
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2019UR03      J.Phys.(London) G46, 105110 (2019)

B.A.Urazbekov, A.S.Denikin, S.M.Lukyanov, N.Itaco, D.M.Janseitov, K.Mendibayev, V.Burjan, V.Kroha, J.Mrazek, W.H.Trzaska, M.N.Harakeh, D.Etasse, I.Stefan, D.Verney, T.Issatayev, Y.E.Penionzhkevich, K.A.Kuterbekov, T.Zholdybayev

Clusterization and strong coupled-channels effects in deuteron interaction with 9Be nuclei

NUCLEAR REACTIONS 9Be(d, d), (d, d'), (d, p), (d, t), (d, α), E=19.5, 35 MeV; measured reaction products, Ep, Ip, Eα, Iα; deduced σ(θ), deformation parameter, spectroscopic amplitudes using the optical model and the coupled-channel approach.

doi: 10.1088/1361-6471/ab37a6
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD0962. Data from this article have been entered in the XUNDL database. For more information, click here.


2018BE28      Phys.Rev. C 98, 034602 (2018)

T.L.Belyaeva, S.A.Goncharov, A.S.Demyanova, A.A.Ogloblin, A.N.Danilov, V.A.Maslov, Yu.G.Sobolev, W.Trzaska, S.V.Khlebnikov, G.P.Tyurin, N.Burtebaev, D.Janseitov, E.Mukhamejanov

Neutron halos in the excited states of 12B

NUCLEAR REACTIONS 11B(d, p), (d, d), E=21.5 MeV; measured proton and deuteron spectra, elastic differential σ(θ), differential σ(θ) for the g.s., and low-spin states of 12B using ΔE-E detector telescopes at the University of Jyvaskyla K130 cyclotron facility. 12B; deduced levels, J, π, reduced widths, spectroscopic factors, asymptotic normalization coefficients, rms neutron radii, neutron halos, and radial single-particle neutron wave functions. Comparison with compound-nucleus and coupled-reaction-channel (CRC) analysis within the Hauser-Feshbach formalism of the statistical compound-nucleus model. Systematics of rms matter radii and halo radii in 9,11Be, 12B, 13,14C.

doi: 10.1103/PhysRevC.98.034602
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2417. Data from this article have been entered in the XUNDL database. For more information, click here.


2018JA17      Int.J.Mod.Phys. E27, 1850089 (2018)

D.M.Janseitov, S.M.Lukyanov, K.Mendibayev, Yu.E.Penionzhkevich, N.K.Skobelev, Yu.G.Sobolev, K.A.Kuterbekov, D.S.Valiolda, T.K.Zholdybayev, W.H.Trzaska, S.V.Khlebnikov, G.P.Tyurin, B.A.Urazbekov, M.N.Harakeh, V.Burjan, V.Kroha, J.Mrazek, S.Piskor, I.Sivacek, V.Glagolev

Investigation of the elastic and inelastic scattering of 3He from 9Be in the energy range 30-60 MeV

NUCLEAR REACTIONS 9Be(3He, 3He), (3He, 3He'), E=30, 40, 47 MeV; measured reaction products; deduced energy levels, J, π, σ(θ). Comparison with theoretical calculations.

doi: 10.1142/S0218301318500891
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD0937.


2018TR01      Nucl.Instrum.Methods Phys.Res. B418, 1 (2018)

W.H.Trzaska, G.N.Knyazheva, J.Perkowski, J.Andrzejewski, S.V.Khlebnikov, E.M.Kozulin, T.Malkiewicz, M.Mutterer, E.O.Savelieva

New experimental stopping power data of 4He, 16O, 40Ar, 48Ca and 84Kr projectiles in different solid materials

NUCLEAR REACTIONS C, 27Al, Ni, Ag, Lu, 197Au, Pb, Th(α, X), (16O, X), (40Ar, X), (48Ca, X), (84Kr, X), E=0.1-11 MeV/nucleon; measured reaction products, time of flight; deduced stopping power.

doi: 10.1016/j.nimb.2017.12.025
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2018WO01      Acta Phys.Pol. B49, 387 (2018)

D.Wojcik, A.Trzcinska, E.Piasecki, M.Kisielinski, M.Kowalczyk, M.Wolinska-Cichocka, C.Bordeanu, B.Gnoffo, H.Jia, C.Lin, N.S.Martorana, M.Mutterer, E.V.Pagano, K.Piasecki, P.Russotto, L.Quatrocchi, W.H.Trzaska, G.Tiurin, R.Wolski, H.Zhang

Transfer Cross Sections at Near-barrier Energy for the 24Mg + 90, 92Zr Systems

NUCLEAR REACTIONS 90,92Zr(24Mg, x), E=76 MeV; measured using multidetector system ICARE with start signal bz the Microchannel Plate (MCP) and stop signal by one of Si detectors placed at polar angle 142, used also to measure the energy of reaction products, and beam energy monitored by Si detectors at 30; deduced E-ToF spectra of backscattered ions; measured stripping reactions involving up up to 4 nucleons and reaction channels up to 2 nucleons picked up (i.e. the product mass from A-6 to A+2, A is the target mass); deduced transfer σtr(θ) and lacking structure of distribution of barrier heights, the cross sections are considerably smaller than those for 20Ne projectile. Preliminary.

doi: 10.5506/aphyspolb.49.387
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2017DE38      Phys.Atomic Nuclei 80, 831 (2017)

A.S.Demyanova, A.A.Ogloblin, S.A.Goncharov, A.N.Danilov, T.L.Belyaeva, W.Trzaska

Use of (3He, t) charge-exchange reactions in determining radii of excited states of nuclei

doi: 10.1134/S1063778817050064
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2016DE39      JETP Lett. 104, 526 (2016)

A.S.Demyanova, A.A.Ogloblin, A.N.Danilov, T.L.Belyaeva, S.A.Goncharov, W.Trzaska

Proton halo in the 13N nucleus

NUCLEAR REACTIONS 13C(3He, t), E not given;13C(3He, 3He'), E=43.6 MeV; 13C(3He, 3He), E=39.6 MeV; analyzed available data. 13N; deduced difraction radius, proton halo. Modified diffraction model (MDM).

doi: 10.1134/S0021364016200108
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2016GA15      Phys.Rev. C 93, 054619 (2016)

A.Gagarski, F.Gonnenwein, I.Guseva, P.Jesinger, Yu.Kopatch, T.Kuzmina, E.Lelievre-Berna, M.Mutterer, V.Nesvizhevsky, G.Petrov, T.Soldner, G.Tiourine, W.H.Trzaska, T.Zavarukhina

Particular features of ternary fission induced by polarized neutrons in the major actinides 233, 235U and 239, 241Pu

NUCLEAR REACTIONS 233,235U, 239,241Pu(polarized n, F), E=cold longitudinally polarized neutron beam from High Flux Reactor at ILL-Grenoble; measured fission fragments and ternary particles, ternary particles (TP)-light fission fragments (LF)-coin, angular asymmetries, angular distributions of ternary particles, trajectories of fragments and ternary α particle, angular ROT shift, TRI asymmetry; analyzed ROT (collective rotation of the compound nucleus down to scission) and TRI (influence of the rotating nucleus on the emission probability of ternary particles) effects, correlation between neutron spin, the momenta light fission (LF) fragment, and ternary particles (TP).

doi: 10.1103/PhysRevC.93.054619
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2016GI07      Phys.Atomic Nuclei 79, 1367 (2016)

K.B.Gikal, E.M.Kozulin, A.A.Bogachev, N.T.Burtebaev, A.V.Edomskiy, I.M.Itkis, M.G.Itkis, G.N.Knyazhev, K.V.Kovalchuk, T.N.Kvochkina, E.Piasecki, V.A.Rubchenya, S.K.Sahiev, W.H.Trzaska, E.Vardaci

Proton induced fission of 232Th at intermediate energies

NUCLEAR REACTIONS 232Th(p, f), E=7, 10, 13, 20, 40, 55 MeV; measured fission fragments mass, energy using two ToF arms of the CORSET spectrometer, Ep, Ip using four Si surface-barrier detectors, En, In(θ) using 8 liquid NE213, n(fragment)-coin; deduced mass-energy distribution of the fission fragments, TKE, yield, pre-neutron mass distribution of fission fragments, pre-equilibrium neutron multiplicity, pres-scission neutron multiplicity (from compound nucleus), σ, division of total σ between symmetric and asymmetric fission models, σ(θ, En).

doi: 10.1134/S1063778816090040
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2016KO33      Eur.Phys.J. A 52, 293 (2016)

E.M.Kozulin, E.Vardaci, I.M.Harca, C.Schmitt, I.Itkis, G.Knyazheva, K.Novikov, A.Bogachev, S.Dmitriev, T.Loktev, F.Azaiez, I.Matea, D.Verney, A.Gottardo, O.Dorvaux, J.Piot, G.Chubarian, W.H.Trzaska, F.Hanappe, C.Borcea, S.Calinescu, C.Petrone

Challenging fission dynamics around the barrier: The case of 34S + 186W

NUCLEAR REACTIONS 186W(34S, F), E=160 MeV; measured fission-fragment-like products, Eγ, Iγ, γ multiplicity using double-arm detection system CORSET; deduced fragment mass distribution, TKE, mass-gated γ-ray energy spectra.

doi: 10.1140/epja/i2016-16293-8
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2016KO35      Phys.Rev. C 94, 054613 (2016)

E.M.Kozulin, G.N.Knyazheva, K.V.Novikov, I.M.Itkis, M.G.Itkis, S.N.Dmitriev, Yu.Ts.Oganessian, A.A.Bogachev, N.I.Kozulina, I.Harca, W.H.Trzaska, T.K.Ghosh

Fission and quasifission of composite systems with Z = 108 - 120: Transition from heavy-ion reactions involving S and Ca to Ti and Ni ions

NUCLEAR REACTIONS 238U(48Ti, X), E=247, 258, 271 MeV; measured mass and energy distributions of binary fragments detected in coincidence using the double-arm time-of-flight spectrometer CORSET at FLNR-JINR-Dubna facility; deduced fusion probabilities, capture and CN cross sections for fissionlike fragments. Comparison with cross sections measured earlier for 238U(36S, X), (64Ni, X), 154Sm, 238U, 244Pu, 248Cm(48Ca, X) reactions at energies near the Coulomb barrier at the same laboratory.

doi: 10.1103/PhysRevC.94.054613
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2016LH01      Eur.Phys.J. A 52, 364 (2016)

G.Lhersonneau, T.Malkiewicz, M.Fadil, D.Gorelov, P.Jones, P.Z.Ngcobo, J.Sorri, W.H.Trzaska

Neutron yield of thick 12C and 13C targets with 20 and 30 MeV deuterons

NUCLEAR REACTIONS Al, Ni, Co, In, Bi(n, γ), E not given[neutrons from thick target 12,13C(d, nx), E=20, 30 MeV]; measured off-line thick target activation Eγ, Iγ using Ge detectors; deduced σ(θ, En), neutron yields. Compared with other measurements.

doi: 10.1140/epja/i2016-16364-x
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2327.


2016OG03      Phys.Atomic Nuclei 79, 514 (2016); Yad.Fiz. 79, 328 (2016)

A.A.Ogloblin, A.S.Demyanova, A.N.Danilov, T.L.Belyaeva, S.A.Goncharov, W.Trzaska

Nuclear states with anomalously large radius (size isomers)

NUCLEAR REACTIONS 12C(α, α), (α, α'), E=60, 240, 386 MeV; calculated elastic and inelastic σ(θ) using DWBA, CC, MDM (Modified Diffraction Model), IRS (Inelastic Rainbow Scattering) model and ANC (Asymptotic Normalization Coefficients) method. 9,11Be, 12B, 12,13C; deduced diffraction radii vs E(cm), nuclei with anomalously large radius (size isomers). Compared with other evaluations.

doi: 10.1134/S1063778816040177
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2016TO19      Bull.Rus.Acad.Sci.Phys. 80, 871 (2016)

S.Yu.Torilov, N.A.Maltsev, V.Z.Goldberg, K.A.Gridnev, V.I.Zherebchevsky, T.Lonnroth, M.Mutterer, B.G.Novatsky, R.B.Panin, J.M.K.Slotte, Yu.G.Sobolev, W.H.Trzaska, G.P.Tyurin, S.V.Khlebnikov

Decay of quasimolecular states in 26Mg

NUCLEAR REACTIONS 14C(12C, 12C), (12C, 10Be), E*=41-44 MeV; calculated σ, σ(θ) using DWBA with phenomenological optical potentials; deduced parameters, resonance-like structure (already observed in the experiment) near E(cm)≈23.5 MeV, resonant-like structure in 16O+10Be channel at E(cm)≈19.7 MeV, dependence of E* vs angular momentum, prediction of 10+ state.

doi: 10.3103/S1062873816080384
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2338.


2016TR05      Phys.Rev. C 93, 054604 (2016)

A.Trzcinska, E.Piasecki, A.Amar, W.Czarnacki, N.Keeley, M.Kisielinski, S.Kliczewski, M.Kowalczyk, B.Lommel, M.Mutterer, R.Siudak, A.Stolarz, I.Strojek, G.Tiourin, W.H.Trzaska

Examination of the influence of transfer channels on the barrier height distribution: Scattering of 20Ne on 58Ni, 60Ni, and 61Ni at near-barrier energies

NUCLEAR REACTIONS 20Ne(58Ni, X), (60Ni, X), (61Ni, X), E=51 MeV; measured reaction products based on time-of-flight and ΔE-E methods, angular distributions, transfer probabilities and transfer cross sections for 1p, 1n, 2n, 2p and α pickup and stripping channels. Experiments carried out at Warsaw U200-P cyclotron facility. Comparison with coupled reaction channel calculations.

doi: 10.1103/PhysRevC.93.054604
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD0815.


2015AA02      Bull.Rus.Acad.Sci.Phys. 79, 848 (2015); Izv.Akad.Nauk RAS, Ser.Fiz 79, 941 (2015)

J.Aaltonen, E.A.Gromova, V.A.Jakovlev, K.Helariutta, N.A.Maltsev, H.Penttila, V.A.Rubchenya, W.H.Trzaska, S.Salminen-Paatero

Formation of heavy neutron-deficient nuclides in 3He-induced reactions

NUCLEAR REACTIONS 235U(3He, X)234Pu/236Pu/237Pu/234Np/235Np/236Np, E=20.4-42.0 MeV; measured reaction products, Eα, Iα, Eγ, Iγ; deduced σ. Comparison with FIPRODY and FRESCO calculations.

doi: 10.3103/S1062873815070047
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2270.


2015DA14      Phys.Atomic Nuclei 78, 777 (2015); Yad.Fiz. 78, 828 (2015)

A.N.Danilov, A.S.Demyanova, S.V.Dmitriev, A.A.Ogloblin, T.L.Belyaeva, S.A.Goncharov, Yu.B.Gurov, V.A.Maslov, Yu.G.Sobolev, W.Trzaska, S.V.Khlebnikov, P.Heikkinen, R.Julin, G.P.Tyurin, N.Burtebaev, T.Zholdybayev

Study of elastic and inelastic 11B+α scattering and search for cluster states of enlarged radius in 11B

NUCLEAR REACTIONS 11B(α, α), (α, α'), E=65 MeV; measured reaction products, Eα, Iα; deduced σ(θ), optical model parameters, J, π, root-mean-square radii.

doi: 10.1134/S1063778815060071
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2353.


2015DE34      Phys.Part. and Nucl.Lett. 12, 703 (2015)

A.S.Denikin, S.M.Lukyanov, N.K.Skobelev, Yu.G.Sobolev, E.I.Voskoboynik, Yu.E.Penionzhkevich, W.H.Trzaska, G.P.Tyurin, V.Burjan, V.Kroha, J.Mrazek, S.Piskor, V.Glagolev, Y.Xu, S.V.Khlebnikov, M.N.Harakeh, K.A.Kuterbekov, Yu.Tuleushev

Inelastic scattering and clusters transfer in 3, 4He + 9Be reactions

NUCLEAR REACTIONS 9Be(α, α), (α, α'), (α, 3He), (α, t), (3He, 6Li), (3He, 6Be), E ∼ 50 MeV; measured reaction products, spectra of total energies; deduced σ(θ), optical potential parameters. Comparison with DWBA calculations.

doi: 10.1134/S1547477115050052
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD0789.


2015DE40      JETP Lett. 102, 413 (2015)

A.S.Demyanova, A.A.Ogloblin, A.N.Danilov, S.V.Dmitriev, V.I.Starostin, S.A.Goncharov, T.L.Belyaeva, W.Trzaska, V.A.Maslov, Yu.G.Sobolev, N.Burtebaev, E.Mukhamedzhanov, L.I.Slusarenko, Yu.N.Pavlenko

Neutron halo in the exotic first excited state of 9Be

NUCLEAR REACTIONS 9Be(α, α), (α, α'), E=40-90 MeV; measured reaction products, Eα, Iα; deduced σ(θ), difraction radii, neutron halo. Comparison with available data.

doi: 10.1134/S0021364015190030
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetF1302.


2015OG04      JETP Lett. 102, 199 (2015)

A.A.Ogloblin, A.S.Demyanova, A.N.Danilov, S.A.Goncharov, T.L.Belyaeva, W.Trzaska, Yu.G.Sobolev

Possible observation of an excited state with an anomalously small radius in the 13C nucleus

NUCLEAR REACTIONS 13C(α, α'), E=65, 90 MeV; measured reaction products; deduced σ(θ), rms radii. Comparison with available data.

doi: 10.1134/S0021364015160109
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2296.


2015OG06      Phys.Atomic Nuclei 78, 985 (2015); Yad.Fiz. 78, 1047 (2015)

A.A.Ogloblin, H.Q.Zhang, C.J.Lin, H.M.Jia, S.V.Khlebnikov, E.A.Kuzmin, A.N.Danilov, A.S.Demyanova, W.H.Trzaska, X.X.Xu, F.Yang, V.V.Sargsyan, G.G.Adamian, N.V.Antonenko, W.Scheid

Analysis of the role of neutron transfer in asymmetric fusion reactions at subbarrier energies

NUCLEAR REACTIONS 208Pb(28Si, X), E=130-140 MeV; measured reaction products; deduced capture σ. Comparison with calculated values.

doi: 10.1134/S1063778815080116
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetF1280.


2015TO13      JETP Lett. 102, 69 (2015)

S.Yu.Torilov, N.A.Maltsev, V.Z.Goldberg, K.A.Gridnev, V.I.Zherebchevsky, T.Lonnroth, B.G.Novatskii, J.M.K.Slotte, Yu.G.Sobolev, W.H.Trzaska, G.P.Tyurin, S.V.Khlebnikov

Quasimolecular states in a reaction with carbon isotopes

NUCLEAR REACTIONS 14C(12C, 10Be), E(cm)=22.1, 23.5, 24.6 MeV; measured reaction products; deduced σ(θ), quasimolecular resonance. Comparison with cluster and DWBA models.

doi: 10.1134/S0021364015140118
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2014KO02      Phys.Rev. C 89, 014614 (2014)

E.M.Kozulin, G.N.Knyazheva, S.N.Dmitriev, I.M.Itkis, M.G.Itkis, T.A.Loktev, K.V.Novikov, A.N.Baranov, W.H.Trzaska, E.Vardaci, S.Heinz, O.Beliuskina, S.V.Khlebnikov

Shell effects in damped collisions of 88Sr with 176Yb at the Coulomb barrier energy

NUCLEAR REACTIONS 176Yb(88Sr, X), E=435 MeV; measured reaction products, (fragment)(fragment)-coin, total kinetic energy (TKE) distributions, double differential cross sections, and excitation energies of fragments using two-arm time-of-flight spectrometer CORSET at K130 cyclotron facility in Jyvaskyla; deduced evidence for low-energy multinucleon transfer reactions as a possible pathway for producing new neutron-rich isotopes in the superheavy element region.

doi: 10.1103/PhysRevC.89.014614
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2014KO45      Phys.Rev. C 90, 054608 (2014); Pub.Note Phys.Rev. C 90, 069901 (2014)

E.M.Kozulin, G.N.Knyazheva, I.M.Itkis, M.G.Itkis, A.A.Bogachev, E.V.Chernysheva, L.Krupa, F.Hanappe, O.Dorvaux, L.Stuttge, W.H.Trzaska, C.Schmitt, G.Chubarian

Fusion-fission and quasifission of superheavy systems with Z = 110-116 formed in 48Ca-induced reactions

NUCLEAR REACTIONS 232Th(48Ca, X)280Ds*, E=244 MeV; 238U(48Ca, X)286Cn*, E=228-238 MeV; 244Pu(48Ca, X)292Fl*, E=226-244 MeV; 248Cm(48Ca, X)296Lv*, E=233-240 MeV; measured binary reaction products in coincidence mode, time-of-flight, capture σ(E) using the double-arm time-of-flight spectrometer CORSET at the U-400 cyclotron of the FLNR-JINR facility; deduced fragment mass and energy distributions, most probable fragment masses and total kinetic energies (TKEs) and their dispersions in dependence on the interaction energies and ion-target combinations, fusion probabilities PCN. 283,284,285,286Cn, 289,290,291,292Fl, 293,294,295,296Lv; estimated lower limits for fission barriers.Comparison with available experimental results and calculations.

doi: 10.1103/PhysRevC.90.054608
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetF1270.


2014LH02      Hyperfine Interactions 223, 253 (2014)

G.Lhersonneau, T.Malkiewicz, W.H.Trzaska

Measurements of nuclide yields in neutron-induced fission of natural uranium for SPIRAL2

NUCLEAR REACTIONS U(n, F), E<50 MeV; measured reaction products; deduced σ, fission products mass distribution, neutron spectra.

doi: 10.1007/s10751-012-0612-9
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2014LU04      J.Phys.(London) G41, 035102 (2014)

S.M.Lukyanov, A.S.Denikin, E.I.Voskoboynik, S.V.Khlebnikov, M.N.Harakeh, V.A.Maslov, Yu.E.Penionzhkevich, Yu.G.Sobolev, W.H.Trzaska, G.P.Tyurin, K.A.Kuterbekov

Study of internal structures of 9, 10Be and 10B in scattering of 4He from 9Be

NUCLEAR REACTIONS 9Be(α, α'), (α, 3He), (α, t), E=63 MeV; measured reaction products, Eα, Iα; deduced σ(θ). Optical model calculations, comparison with available data.

doi: 10.1088/0954-3899/41/3/035102
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO2194. Data from this article have been entered in the XUNDL database. For more information, click here.


2014OG01      Eur.Phys.J. A 50, 157 (2014)

A.A.Ogloblin, H.Q.Zhang, C.J.Lin, H.M.Jia, S.V.Khlebnikov, E.A.Kuzmin, W.H.Trzaska, X.X.Xu, F.Yan, V.V.Sargsyan, G.G.Adamian, N.V.Antonenko, W.Scheid

Role of neutron transfer in asymmetric fusion reactions at sub-barrier energies

NUCLEAR REACTIONS 208Pb(28Si, x), (30Si, x), E(cm)≈115-150 MeV; measured reaction products using SSTD array; deduced fusion σ. 208Pb(20Ne, x), E(cm)=85-109 MeV;208Pb(28Si, x), (30Si, x), E(cm)≈115-150 MeV; calculated fusion σ using quantum diffusion approach. Compared with other available data. 7

doi: 10.1140/epja/i2014-14157-y
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetF1280.


2014OH04      Phys.Rev. C 90, 064617 (2014)

S.Ohkubo, Y.Hirabayashi, A.A.Ogloblin, Yu.A.Gloukhov, A.S.Dem'yanova, W.H.Trzaska

Refractive effects and Airy structure in inelastic 16O + 12C rainbow scattering

NUCLEAR REACTIONS 12C(16O, 16O)(16O, 16O'), E=170, 181, 200, 260, 281 MeV; measured particle spectra, σ(E, θ) Jyvaskyla University cyclotron facility; analyzed by coupled-channels method using an extended double folding (EDF) model, and taking into account g.s., first 2+ and 3- states of 12C and 16O; 12C(16O, 16O), (16O, 16O'), E=200, 330, 350, 400, 450, 500, 608 MeV; calculated σ(E, θ) distributions for elastic scattering and inelastic scattering to the first 2+ state in 12C. Comparison with available experimental data; deduced Airy minima in elastic scattering and in inelastic (rainbow) scattering to the first 2+ state of 12C.

doi: 10.1103/PhysRevC.90.064617
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Data from this article have been entered in the XUNDL database. For more information, click here.


2014TR03      Acta Phys.Pol. B45, 383 (2014)

A.Trzcinska, E.Piasecki, W.Czarnacki, P.Decowski, N.Keeley, M.Kisielinski, S.Kliczewski, P.Koczon, A.Kordyasz, M.Kowalczyk, S.Khlebnikov, E.Koshchiy, T.Krogulski, B.Lommel, T.Loktev, M.Mutterer, K.Piasecki, I.Strojek, W.H.Trzaska, S.Smirnov, A.Stolarz, G.Tiourin

Barrier Height Distributions - the Influence of Weak Channels

doi: 10.5506/APhysPolB.45.383
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2013LH01      Nucl.Instrum.Methods Phys.Res. A 698, 224 (2013)

G.Lhersonneau, T.Malkiewicz, P.Jones, P.Karvonen, S.Ketelhut, O.Bajeat, M.Fadil, S.Gaudu, M.G.Saint-Laurent, W.H.Trzaska

A facility for fast-neutron irradiations at Jyvaeskylae and its use for nuclide cross-section measurements in fission

NUCLEAR REACTIONS 238U(n, f), E=12.7 MeV; measured products, 132Sn; deduced σ, σ(E). Data were imported from EXFOR entry 23188.

doi: 10.1016/j.nima.2012.09.051
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Data from this article have been entered in the EXFOR database. For more information, access X4 dataset23188.


2012KO34      Phys.Rev. C 86, 044611 (2012)

E.M.Kozulin, E.Vardaci, G.N.Knyazheva, A.A.Bogachev, S.N.Dmitriev, I.M.Itkis, M.G.Itkis, A.G.Knyazev, T.A.Loktev, K.V.Novikov, E.A.Razinkov, O.V.Rudakov, S.V.Smirnov, W.Trzaska, V.I.Zagrebaev

Mass distributions of the system 136Xe + 208Pb at laboratory energies around the Coulomb barrier: A candidate reaction for the production of neutron-rich nuclei at N=126

NUCLEAR REACTIONS 208Pb(136Xe, X), E=700, 870, 1020 MeV; measured particle spectra, (particle)(particle)-coin using CORSET spectrometer at Flerov lab, fragment mass-energy distribution, velocity and TKEL distributions, fragment mass yield, σ(E, θ). Comparison with theoretical calculations.

RADIOACTIVITY 212Bi, 210,212,214,216,218Po, 220,222Rn, 224Ra(α); measured α spectra.

doi: 10.1103/PhysRevC.86.044611
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetF1274.


2012LH01      Eur.Phys.J. A 48, 116 (2012)

G.Lhersonneau, T.Malkiewicz, P.Jones, S.Ketelhut, W.H.Trzaska

Neutron production by stopping 55 MeV deuterons in carbon and heavy water

NUCLEAR REACTIONS 12C(d, n), E=40, 55 MeV;2H, O(d, n), E=55 MeV[heavy water]; measured thick target Eγ, Iγ(θ< 230) using stacked foils; deduced σ, neutron spectra, yields using stack activation method and TRIUMF software PHYSICA. Compared with other data at different incident energies.

doi: 10.1140/epja/i2012-12116-4
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2012PI08      Phys.Rev. C 85, 054604 (2012); Pub.Note Phys.Rev. C 85, 059903 (2012)

E.Piasecki, W.Czarnacki, N.Keeley, M.Kisielinski, S.Kliczewski, A.Kordyasz, M.Kowalczyk, S.Khlebnikov, E.Koshchiy, T.Krogulski, T.Loktev, M.Mutterer, A.Piorkowska, K.Rusek, M.Sillanpaa, A.Staudt, I.Strojek, S.Smirnov, W.H.Trzaska, A.Trzcinska

Weak channels in backscattering of 20Ne on natNi, 118Sn, and 208Pb

NUCLEAR REACTIONS Ni(20Ne, X), E=51.7 MeV; 118Sn(20Ne, X), E=72.1 MeV; 208Pb(20Ne, X), E=102.0 MeV; measured particle spectra, time of flight, energy loss, transfer σ; deduced mass distribution of reaction products, inelastic Q-spectra. 90Zr(20Ne, X), E=62.8 MeV; 92Zr(20Ne, X), E=62.6 MeV; analyzed data. Comparison with coupled-channels (CC) calculations.

doi: 10.1103/PhysRevC.85.054604
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2012PI09      Phys.Rev. C 85, 054608 (2012); Pub.Note Phys.Rev. C 85, 059902 (2012)

E.Piasecki, L.Swiderski, N.Keeley, M.Kisielinski, M.Kowalczyk, S.Khlebnikov, T.Krogulski, K.Piasecki, G.Tiourin, M.Sillanpaa, W.H.Trzaska, A.Trzcinska

Smoothing of structure in the fusion and quasielastic barrier distributions for the 20Ne + 208Pb system

NUCLEAR REACTIONS 208Pb(20Ne, 20Ne), (20Ne, X), E=93-117 MeV; measured time of flight spectrum for fission fragments, fusion σ(E), quasielastic scattering σ(E); deduced fusion and quasielastic barrier height distributions. Comparison with coupled-channels calculations.

doi: 10.1103/PhysRevC.85.054608
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2012RO32      Prog.Theor.Phys.(Kyoto), Suppl. 196, 184 (2012)

G.V.Rogachev, M.Avila, S.Cherubini, V.Z.Goldberg, M.Gulino, E.D.Johnson, A.N.Kuchera, M.La Cognata, L.Lamia, S.Romano, L.E.Miller, R.G.Pizzone, G.G.Rapisarda, M.L.Sergi, C.Spitaleri, R.E.Tribble, W.H.Trzaska, A.Tumino

Clustering in Non-Self-Conjugate Nuclei

NUCLEAR REACTIONS 9Be(p, α), E(cm)=2-5.5 MeV; 4He(14C, X)18O, E(cm)=2-7 MeV; measured reaction products, Eα, Iα; deduced σ(θ), resonance parameters. Comparison with available data, R-matrix fit.

doi: 10.1143/PTPS.196.184
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2011KU24      Phys.Rev. C 84, 054615 (2011); Erratum Phys.Rev. C 85, 069902 (2012); Erratum Phys.Rev. C 88, 039901 (2013)

A.N.Kuchera, G.V.Rogachev, V.Z.Goldberg, E.D.Johnson, S.Cherubini, M.Gulino, M.La Cognata, L.Lamia, S.Romano, L.E.Miller, R.G.Pizzone, G.G.Rapisarda, M.L.Sergi, C.Spitaleri, R.E.Tribble, W.H.Trzaska, A.Tumino

Molecular structures in T=1 states of 10B

NUCLEAR REACTIONS 1H(9Be, α)6Li*, E=22.3-55.6 MeV; measure Eα, Iα, particle spectra, σ(E, θ). 10B; deduced levels, J, π, isospin, widths, cluster state, highly deformed molecular type rotational band. R-matrix analysis of excitation functions and angular distributions. Comparison with level structure in 10Be.

doi: 10.1103/PhysRevC.84.054615
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1961. Data from this article have been entered in the XUNDL database. For more information, click here.


2011NO07      Eur.Phys.J. A 47, 73 (2011)

M.Norrby, T.Lonnroth, V.Z.Goldberg, G.V.Rogachev, M.S.Golovkov, K.-M.Kallman, M.Lattuada, S.V.Perov, S.Romano, B.B.Skorodumov, G.P.Tiourin, W.H.Trzaska, A.Tumino, A.N.Vorontsov

Highly excited alpha-cluster states in 34S

NUCLEAR REACTIONS 4He(30Si, α), E=150 MeV; measured thick target Eα, Iα(θ). 34S; deduced levels, resonances, J, π, L-transfers, dσ(Eα), σ(θ), Γα/Γ, Γ, resonance parameters. R-matrix analysis.

doi: 10.1140/epja/i2011-11073-8
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1904. Data from this article have been entered in the XUNDL database. For more information, click here.


2011NO12      Eur.Phys.J. A 47, 96 (2011)

M.Norrby, T.Lonnroth, V.Z.Goldberg, G.V.Rogachev, M.S.Golovkov, K.-M.Kallman, M.Lattuada, S.V.Perov, S.Romano, B.B.Skorodumov, G.P.Tiourin, W.H.Trzaska, A.Tumino, A.N.Vorontsov

Elastic alpha-particle resonances as evidence of clustering at high excitation in 40Ca

NUCLEAR REACTIONS 4He(36Ar, 36Ar), E=150 MeV; measured thick target Eα, Iα(θ). 40Ca deduced resonance parameters, moments of inertia.

doi: 10.1140/epja/i2011-11096-1
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1952. Data from this article have been entered in the XUNDL database. For more information, click here.


2011OG09      Phys.Atomic Nuclei 74, 1548 (2011); Yad.Fiz. 74, 1581 (2011)

A.A.Ogloblin, A.N.Danilov, T.L.Belyaeva, A.S.Demyanova, S.A.Goncharov, W.Trzaska

Observation of abnormally large radii of nuclei in excited states in the vicinity of neutron thresholds

NUCLEAR REACTIONS 12C(14Be, 14Be), E(cm)=439 MeV; 12C(11Be, 11Be), E=384 MeV; 4He(12Be, 12Be), E(cm)=180 MeV; 13C(α, α), (3He, 3He), E(cm) <300 MeV; analyzed σ(θ) and difraction radii data; deduced abnormally large radii for excited states.

doi: 10.1134/S1063778811110147
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2011OG10      Phys.Rev. C 84, 054601 (2011)

A.A.Ogloblin, A.N.Danilov, T.L.Belyaeva, A.S.Demyanova, S.A.Goncharov, W.Trzaska

Effect of neutron halos on excited states of nuclei

NUCLEAR REACTIONS 9Be(α, α), (α, α'), E(cm)=35.5 MeV; 13C(3He, 3He), (3He, 3He), E=39.6 MeV; 13C(α, α), (α, α'), E(cm)=388 MeV; 12C(α, α), (α, α'), E(cm)=30-300 MeV; 12C(11Be, 11Be), E(cm)=282 MeV; 12C(11Be, 11Be'), E(cm)=385 MeV; analyzed σ(θ); deduced rms radii, diffraction radii, neutron halos in the excited states. Modified diffraction model.

doi: 10.1103/PhysRevC.84.054601
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2011TO07      JETP Lett. 94, 6 (2011)

S.Yu.Torilov, K.A.Gridnev, V.I.Zherebchevsky, M.Brenner, L.I.Vinogradov, V.Z.Goldberg, T.V.Korovitskaya, T.Lonnroth, N.A.Maltsev, M.Mutterer, B.G.Novatskii, M.Norrby, J.M.K.Slotte, Yu.G.Sobolev, W.H.Trzaska, G.P.Tyurin, S.V.Khlebnikov

Cluster states in the neutron excess nucleus 22Ne

RADIOACTIVITY 22Ne(α) [from 14C(12C, α), E=44 MeV]; measured decay products, Eα, Iα. 22Ne; deduced excited states in 22Ne, energies, J, π, angular correlations for α-decay, α-clusters. Comparison with shell model.

doi: 10.1134/S0021364011130170
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2011TO14      Eur.Phys.J. A 47, 158 (2011)

S.Yu.Torilov, M.Brenner, V.Z.Goldberg, K.A.Gridnev, S.V.Khlebnikov, T.V.Korovitskaya, T.Lonnroth, M.Mutterer, M.Norrby, B.G.Novatski, V.A.Rubchenya, J.M.K.Slotte, Yu.G.Sobolev, W.H.Trzaska, G.P.Tyurin, L.I.Vinogradov, V.I.Zherebchevsky

High-spin states in 22Ne populated in the 14C(12C, α) reaction

NUCLEAR REACTIONS 14C(12C, 2α), E=44 MeV; measured Eα, Iα(θ), αα-coin, αα angular correlations. 22Ne deduced high-spin levels, J, π, moment of inertia, 20,22Ne yrast lines.

doi: 10.1140/epja/i2011-11158-4
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Data from this article have been entered in the XUNDL database. For more information, click here.


2010DE32      Nucl.Phys. A834, 473c (2010)

A.S.Demyanova, H.G.Bohlen, A.N.Danilov, S.A.Goncharov, S.V.Khlebnikov, V.A.Maslov, Yu.E.Penionzkevich, Yu.G.Sobolev, W.Trzaska, G.P.Tyurin, A.A.Ogloblin

12C + 12C large angle elastic scattering at 240 MeV

NUCLEAR REACTIONS 12C(12C, 12C), E=240 MeV; 12C(13C, 13C), E=250 MeV; measured σ(θ); calculated σ(θ) using different optical potentials; analyzed Airy minima.

doi: 10.1016/j.nuclphysa.2010.01.068
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetA0842.


2010KO16      Phys.Lett. B 686, 227 (2010)

E.M.Kozulin, G.N.Knyazheva, I.M.Itkis, M.G.Itkis, A.A.Bogachev, L.Krupa, T.A.Loktev, S.V.Smirnov, V.I.Zagrebaev, J.Aysto, W.H.Trzaska, V.A.Rubchenya, E.Vardaci, A.M.Stefanini, M.Cinausero, L.Corradi, E.Fioretto, P.Mason, G.F.Prete, R.Silvestri, S.Beghini, G.Montagnoli, F.Scarlassara, F.Hanappe, S.V.Khlebnikov, J.Kliman, A.Brondi, A.Di Nitto, R.Moro, N.Gelli, S.Szilner

Investigation of the reaction 64Ni + 238U being an option of synthesizing element 120

NUCLEAR REACTIONS 238U(48Ca, X), E=220-260 MeV; 238U(64Ni, X), E=320-385 MeV; measured fragment yields and energy distributions using CORSET time-of-flight spectrometer; deduced σ; analyzed reaction mechanism features using Viola systematics. 244Pu(58Fe, X), E=328 MeV; analyzed data. Discussed superheavy element formation.

doi: 10.1016/j.physletb.2010.02.041
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2010LA19      J.Phys.:Conf.Ser. 202, 012019 (2010)

M.La Cognata, C.Spitaleri, A.Mukhamedzhanov, R.E.Tribble, T.Al-Abdullah, A.Banu, S.Cherubini, A.Coc, V.Crucilla, V.Goldberg, M.Gulino, B.Irgaziev, G.G.Kiss, L.Lamia, J.Mrazek, R.G.Pizzone, S.M.R.Puglia, G.G.Rapisarda, S.Romano, M.L.Sergi, G.Tabacaru, L.Trache, W.Trzaska, S.Tudisco, A.Tumino

First measurement of the 18O(p, α)15N cross section at astrophysical energies

NUCLEAR REACTIONS 2H(18O, α15N), E=54 MeV; measured Eα, Iα(θ), E(particle), I(particle, θ); deduced dσ, resonances. 18O(p, α), E=0-8 keV; calculated; deduced reaction rate, resonance strengths from 2H(18O, α15N) using Trojan Horse method.

doi: 10.1088/1742-6596/202/1/012019
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2010LO12      Eur.Phys.J. A 46, 5 (2010)

T.Lonnroth, M.Norrby, V.Z.Goldberg, G.V.Rogachev, M.S.Golovkov, K.-M.Kallman, M.Lattuada, S.V.Perov, S.Romano, B.B.Skorodumov, G.P.Tiourin, W.H.Trzaska, A.Tumino, A.N.Vorontsov

Highly excited alpha-cluster states in 32S studied with the thick-target inverse kinematics method

NUCLEAR REACTIONS 4He(28Si, 28Si), E=150 MeV; measured thick target Eγ, Iγ, Eα, Iα(θ); deduced resonances E, J, π, α widths, resonance parameters, σ(θ); calculated σ(θ) using R-matrix. Comparison to other data.

doi: 10.1140/epja/i2010-11021-2
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1945. Data from this article have been entered in the XUNDL database. For more information, click here.


2010PY02      Eur.Phys.J. A 45, 29 (2010)

Yu.V.Pyatkov, D.V.Kamanin, W.von Oertzen, A.A.Alexandrov, I.A.Alexandrova, O.V.Falomkina, N.A.Kondratjev, Yu.N.Kopatch, E.A.Kuznetsova, Yu.E.Lavrova, A.N.Tyukavkin, W.Trzaska, V.E.Zhuhcko

Collinear cluster tri-partition of 252Cf (sf) and in the 235U (nth, f) reaction

RADIOACTIVITY 252Cf(SF); measured E(fragment), I(fragment, θ), (fragment)(fragment)-coin from fission; deduced fission fragment mass correlations.

NUCLEAR REACTIONS 235U(n, F), E=thermal; measured E(fragment), I(fragment, θ), (fragment)(fragment)-coin, fission fragment yields; deduced fission fragment mass correlations, ternary cluster decay.

doi: 10.1140/epja/i2010-10988-8
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2009HE23      Eur.Phys.J. A 42, 333 (2009)

R.-D.Herzberg, S.Moon, S.Eeckhaudt, P.T.Greenlees, P.A.Butler, T.Page, A.V.Afanasjev, N.Amzal, J.E.Bastin, F.Becker, M.Bender, B.Bruyneel, J.F.C.Cocks, I.G.Darby, O.Dorvaux, K.Eskola, J.Gerl, T.Grahn, C.Gray-Jones, N.J.Hammond, K.Hauschild, P.-H.Heenen, K.Helariutta, A.Herzberg, F.Hessberger, M.Houry, A.Hurstel, R.D.Humphreys, G.D.Jones, P.M.Jones, R.Julin, S.Juutinen, H.Kankaanpaa, H.Kettunen, T.L.Khoo, W.Korten, P.Kuusiniemi, Y.LeCoz, M.Leino, A.-P.Leppanen, C.J.Lister, R.Lucas, M.Muikku, P.Nieminen, M.Nyman, R.D.Page, T.Page, J.Pakarinen, A.Pritchard, P.Rahkila, P.Reiter, M.Sandzelius, J.Saren, Ch.Schlegel, C.Scholey, Ch.Theisen, W.H.Trzaska, J.Uusitalo, A.Wiens, H.J.Wollersheim

Structure of rotational bands in 253No

NUCLEAR REACTIONS 207Pb(48Ca, 2n), E=219 MeV; measured Eγ, Iγ, γγ-, (recoil)γ-coin with JUROGRAM and RITU; analyzed conversion electron spectra from SACRED detector. 253No; deduced T1/2, J, π, level energies, multipolarities, branching ratios. Comparison with rotational model.

doi: 10.1140/epja/i2009-10855-9
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2009LH01      Nucl.Instrum.Methods Phys.Res. A603, 228 (2009)

G.Lhersonneau, T.Malkiewicz, K.Kolos, M.Fadil, H.Kettunen, M.G.Saint-Laurent, A.Pichard, W.H.Trzaska, G.Tyurin, L.Cousin

Neutron yield from carbon, light- and heavy-water thick targets irradiated by 40 MeV deuterons NUCLEAR REACTIONS C(d, nX), E=40 MeV; measured yields, flux, neutron spectra, σ(θ), σ(E). Comparison with model calculation.

doi: 10.1016/j.nima.2009.02.035
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1746.


2009PE31      Eur.Phys.J. A 42, 379 (2009)

J.Perkowski, J.Andrzejewski, J.Srebrny, A.M.Bruce, Ch.Droste, E.Grodner, M.Kisielinski, A.Korman, M.Kowalczyk, J.Kownacki, A.Krol, J.Marganiec, J.Mierzejewski, T.Morek, K.Sobczak, W.H.Trzaska, M.Zielinska

Absolute E3 and M2 transition probabilities for the electromagnetic decay of the Ip=Kp=8- isomeric state in 132Ce

NUCLEAR REACTIONS 120Sn(16O, 4n), E=80 MeV; measured Eγ, Iγ, ce, eγ-, γγ-coin, ICCs using OSIRIS-II array. 132Ce; deduced levels, J, π, B(E3), B(M2), multipolarities.

doi: 10.1140/epja/i2009-10820-8
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2009PI08      Acta Phys.Pol. B40, 849 (2009)

E.Piasecki, A.Trzcinska, W.Gawlikowicz, J.Jastrzebski, N.Keeley, M.Kisielinski, S.Kliczewski, A.Kordyasz, M.Kowalczyk, S.Khlebnikov, E.Koshchiy, E.Kozulin, T.Krogulski, T.Lotkiev, M.Mutterer, K.Piasecki, A.Piorkowska, K.Rusek, A.Staudt, I.Strojek, W.H.Trzaska, M.Sillanpaa, S.Smirnov, G.Tiourin, K.Hagino, N.Rowley

Are the Weak Channels Really Weak?


2009PI15      Phys.Rev. C 80, 054613 (2009)

E.Piasecki, L.Swiderski, W.Gawlikowicz, J.Jastrzebski, N.Keeley, M.Kisielinski, S.Kliczewski, A.Kordyasz, M.Kowalczyk, S.Khlebnikov, E.Koshchiy, E.Kozulin, T.Krogulski, T.Loktev, M.Mutterer, K.Piasecki, A.Piorkowska, K.Rusek, A.Staudt, M.Sillanpaa, S.Smirnov, I.Strojek, G.Tiourin, W.H.Trzaska, A.Trzcinska, K.Hagino, N.Rowley

Effects of weakly coupled channels on quasielastic barrier distributions

NUCLEAR REACTIONS 90,92Zr(20Ne, X), E=36-64 MeV; measured backscattered particle spectra, quasielastic σ; deduced barrier distributions, inelastic Q-value spectra and particle-transfer σ. Comparison with coupled-channel calculations.

doi: 10.1103/PhysRevC.80.054613
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2009RU09      Int.J.Mod.Phys. E18, 830 (2009)

V.A.Rubchenya, W.H.Trzaska, E.Vardaci

Neck fragmentation in fission and quasifission of heavy and superheavy nuclei

NUCLEAR REACTIONS 241Pu(n, f), E=thermal; calculated yields of light charged particles; compared to data; Pb(86Kr, α), E=600 MeV; calculated σ(θ). Compared to data.

doi: 10.1142/S0218301309012938
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2008KN01      Phys.Part. and Nucl.Lett. 5, 21 (2008); Pisma Zh.Fiz.Elem.Chast.Atom.Yadra No.1 [143], 40 (2008)

G.N.Knyazheva, M.G.Itkis, S.V.Khlebnikov, E.M.Kozulin, V.G.Lyapin, V.A.Rubchenya, W.Trzaska

The influence of the entrance channel on the formation and decay of the compound nucleus 250No

NUCLEAR REACTIONS 206Pb(44Ca, X), E=217, 227 MeV; 186W(64Ni, X), E=300, 311 MeV; measured mass-energy distributions of binary fragments, σ(θ) for fissionlike fragments. 250No; deduced influence of mass assymetry of the entrance channel in compound nucleus formation.

doi: 10.1134/S1547477108010044
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2008LA13      Phys.Rev.Lett. 101, 152501 (2008)

M.La Cognata, C.Spitaleri, A.M.Mukhamedzhanov, B.Irgaziev, R.E.Tribble, A.Banu, S.Cherubini, A.Coc, V.Crucilla, V.Z.Goldberg, M.Gulino, G.G.Kiss, L.Lamia, J.Mrazek, R.G.Pizzone, S.M.R.Puglia, G.G.Rapisarda, S.Romano, M.L.Sergi, G.Tabacaru, L.Trache, W.Trzaska, A.Tumino

Measurement of the 20 and 90 keV Resonances in the 18O(p, α)15N Reaction via the Trojan Horse Method

NUCLEAR REACTIONS 2H(18O, nα), E=54 MeV; measured σ(θ, E). 18O(p, α), E=0-250 keV; deduced σ(θ). 19F; deduced low lying resonance strengths. Discussed astrophysical implications.

doi: 10.1103/PhysRevLett.101.152501
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1713. Data from this article have been entered in the XUNDL database. For more information, click here.


2008MU24      Phys.Rev. C 78, 064616 (2008)

M.Mutterer, Yu.N.Kopatch, S.R.Yamaledtinov, V.G.Lyapin, J.von Kalben, S.V.Khlebnikov, M.Sillanpaa, G.P.Tyurin, W.H.Trzaska

Energy distribution of ternary α particles in spontaneous fission of 252Cf

RADIOACTIVITY 252Cf(SF); measured Eα, Iα for ternary α particles, ternary 6He-spectra; deduced 6He/4He ratio.

doi: 10.1103/PhysRevC.78.064616
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Data from this article have been entered in the EXFOR database. For more information, access X4 dataset23057.


2007IT03      Int.J.Mod.Phys. E16, 957 (2007)

M.G.Itkis, A.A.Bogachev, I.M.Itkis, G.N.Knyazheva, N.A.Kondratiev, E.M.Kozulin, L.Krupa, Yu.Ts.Oganessian, I.V.Pokrovsky, E.V.Prokhorova, A.Ya.Rusanov, V.M.Voskresenski, V.A.Rubchenya, W.H.Trzaska

The process of fusion-fission of superheavy nuclei

NUCLEAR REACTIONS 208Pb(48Ca, X), (50Ti, X), (56Fe, X), (86Kr, X), E not given; 208Pb, 238U, 244Pu, 248Cm(48Ca, X), E not given; measured fragment mass distributions, yields and cross sections.

doi: 10.1142/S0218301307006423
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2007LH01      Nucl.Instrum.Methods Phys.Res. A576, 371 (2007)

G.Lhersonneau, T.Malkiewicz, D.Vakhtin, V.Plokhoi, O.Alyakrinskiy, M.Cinausero, Ya.Kandiev, H.Kettunen, S.Khlebnikov, H.Penttila, G.Prete, V.Rizzi, S.Samarin, L.Tecchio, W.H.Trzaska, G.Tyurin

Neutron yield from a 13C thick target irradiated by protons of intermediate energy

NUCLEAR REACTIONS 13C(p, n), E=20, 25, 40 MeV; measured neutron energy, σ and angular distributions. Compared results to existing data and model calculations.

doi: 10.1016/j.nima.2007.02.106
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1514.


2007SA45      Phys.Rev. C 76, 034605 (2007)

R.N.Sagaidak, S.P.Tretyakova, S.V.Khlebnikov, A.A.Ogloblin, N.Rowley, W.H.Trzaska

Nuclear potentials for sub-barrier fusion and cluster decay in 14C, 18O+208Pb systems

NUCLEAR REACTIONS 208Pb(14C, X), (18O, X), E < 100 MeV; analyzed fission cross sections and near barrier fusion excitation functions using the barrier-passing model. Deduced barrier penetrabilities and ground state cluster decay probabilities.

doi: 10.1103/PhysRevC.76.034605
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2006BR31      Phys.Scr. 74, 692 (2006)

M.Brenner, M.Lattuada, M.Gulino, S.V.Khlebnikov, C.Li, G.Prete, W.H.Trzaska, M.Zadro, S.E.Belov

Alpha-particle transfer from 6Li to 28Si leading to high excitation of 32S

NUCLEAR REACTIONS 28Si(6Li, dα), E=47 MeV; measured Ed, Eα, dα-coin, angular correlations. 28Si, 32S deduced excited states energies.

doi: 10.1088/0031-8949/74/6/016
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2006DE33      Phys.Atomic Nuclei 69, 1383 (2006)

A.S.Demyanova, S.E.Belov, Yu.A.Glukhov, S.A.Goncharov, A.Izadpanakh, S.V.Khlebnikov, V.A.Maslov, Yu.G.Sobolev, A.A.Ogloblin, Yu.E.Penionzhkevich, W.H.Trzaska, A.Yu.Tultsev, G.P.Tyurin

First Observation of Nuclear Rainbow Scattering in 16O + 40Ca System

NUCLEAR REACTIONS 40Ca(16O, 16O), E=214 MeV; measured σ(θ); deduced Airy minimum, rainbow scattering.

doi: 10.1134/S1063778806080163
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2006LE29      Eur.Phys.J. A 28, 301 (2006)

A.-P.Leppanen, J.Uusitalo, P.T.Greenlees, R.-D.Herzberg, N.Amzal, F.Becker, P.A.Butler, A.J.C.Chewter, J.F.C.Cocks, O.Dorvaux, S.Eeckhaudt, K.Eskola, J.Gerl, T.Grahn, N.J.Hammond, K.Hauschild, K.Helariutta, F.P.Hessberger, M.Houry, G.D.Jones, P.M.Jones, R.Julin, S.Juutinen, H.Kankaanpaa, H.Kettunen, T.L.Khoo, W.Korten, P.Kuusiniemi, Y.Le Coz, M.Leino, C.J.Lister, R.Lucas, M.Muikku, P.Nieminen, M.Nyman, R.D.Page, J.Pakarinen, P.Rahkila, P.Reiter, J.Saren, Ch.Schlegel, C.Scholey, O.Stezowski, Ch.Theisen, W.H.Trzaska, H.J.Wollersheim

Recoil-fission tagging of the transfermium nucleus 252No

NUCLEAR REACTIONS 206Pb(48Ca, 2n), E=216 MeV; measured Eγ, Iγ, (recoil)γ-coin, (fission)γ-coin, Eα, Iα, (recoil)α-coin. 252No deduced fission and α branching ratios.Jurosphere II array, recoil-decay and recoil-fission tagging.

RADIOACTIVITY 252No(α), (SF) [from 206Pb(48Ca, 2n)]; measured T1/2.

doi: 10.1140/epja/i2006-10056-2
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2006RU10      Phys.Atomic Nuclei 69, 1388 (2006)

V.A.Rubchenya, A.A.Alexandrov, S.V.Khlebnikov, V.G.Lyapin, V.A.Maslov, Yu.E.Penionzhkevich, G.Prete, Yu.G.Sobolev, G.P.Tyurin, W.H.Trzaska, D.N.Vakhtin, E.Vardaci

Light Particle Accompanied Quasifission in Superheavy Composite Systems

NUCLEAR REACTIONS 208Pb(86Kr, pX), (86Kr, αX), E=500, 600 MeV; measured Ep, Eα, σ(E, θ), heavy fragment energy and mass distributions; deduced α-particle accompanied quasifission.

doi: 10.1134/S1063778806080175
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2005AA02      Radiochim.Acta 93, 377 (2005)

J.Aaltonen, E.A.Gromova, K.Helariutta, V.A.Jakovlev, W.H.Trzaska, J.Huikari, V.S.Kolhinen, S.Rinta-Antila

Production of 234, 235Np and 236Pu in bombardment of 236U with protons in the energy range from 17 to 40 MeV

NUCLEAR REACTIONS 236U(p, X)234Np/235Np/236Np/236Pu, E=17-40 MeV; measured σ, thick-target yields.

doi: 10.1524/ract.2005.93.7.377
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2005AL32      Nucl.Instrum.Methods Phys.Res. A547, 616 (2005)

O.Alyakrinskiy, A.Andrighetto, M.Barbui, S.Brandenburg, M.Cinausero, B.Dalena, P.Dendooven, E.Fioretto, G.Lhersonneau, W.Lyapin, G.Prete, G.Simonetti, L.Stroe, L.B.Tecchio, W.H.Trzaska

Neutron yield from a thick 13C target irradiated by 90 MeV protons

NUCLEAR REACTIONS 13C(p, nX), E=90 MeV; measured En, σ(E, θ), thick-target yield.

doi: 10.1016/j.nima.2005.03.161
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2005JE04      Eur.Phys.J. A 24, 379 (2005)

P.Jesinger, Yu.N.Kopatch, M.Mutterer, F.Gonnenwein, A.M.Gagarski, J.V.Kalben, V.Nesvizhevsky, G.A.Petrov, W.H.Trzaska, H.-J.Wollersheim

New experimental studies on the quaternary fission of 233, 235U(nth, f) and 252Cf(sf)

RADIOACTIVITY 252Cf(SF); measured Eα, light charged particle yields, spectra, coincidences from quaternary fission; deduced fission mechanism features.

NUCLEAR REACTIONS 233,235U(n, F), E=thermal; measured Eα, light charged particle yields, spectra, coincidences from quaternary fission; deduced fission mechanism features.

doi: 10.1140/epja/i2005-10026-2
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Data from this article have been entered in the EXFOR database. For more information, access X4 dataset22925.


2005PI10      Phys.Lett. B 615, 55 (2005)

E.Piasecki, L.Swiderski, P.Czosnyka, M.Kowalczyk, K.Piasecki, M.Witecki, T.Czosnyka, J.Jastrzebski, A.Kordyasz, M.Kisielinski, T.Krogulski, M.Mutterer, S.Khlebnikov, W.H.Trzaska, K.Hagino, N.Rowley

Absence of structure in the 20, 22Ne + 118Sn quasi-elastic barrier distribution

NUCLEAR REACTIONS 118Sn(20Ne, X), (22Ne, X), E ≈ 50-80 MeV; measured particle spectra; deduced quasi-elastic barrier distributions. Coupled channels analysis.

doi: 10.1016/j.physletb.2005.03.070
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2005RO37      Nucl.Instrum.Methods Phys.Res. B241, 977 (2005)

G.V.Rogachev, A.A.Aprahamian, F.D.Becchetti, P.Boutachkov, Y.Chen, G.Chubarian, P.A.DeYoung, A.Fomichev, V.Z.Goldberg, M.S.Golovkov, J.J.Kolata, Yu.Ts.Oganessian, G.F.Peaslee, M.Quinn, A.Rodin, B.B.Skorodumov, R.S.Slepnev, G.Ter-Akopian, W.H.Trzaska, A.Wohr, R.Wolski

Isobaric analog states as a tool for spectroscopy of exotic nuclei

NUCLEAR REACTIONS 1H(8He, 8He), E not given; measured recoil proton spectrum; deduced excitation function. 1H(6He, 6Li), E not given; measured neutron spectrum, nγ-coin; deduced excitation function. 7,9Li deduced resonance parameters. 7,9He deduced analog states features.

doi: 10.1016/j.nimb.2005.07.157
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2005SO18      Bull.Rus.Acad.Sci.Phys. 69, 1790 (2005)

Yu.G.Sobolev, A.Budzanowski, E.Bialkowski, T.K.Zholdybaev, E.V.Zemlyanaya, R.Kalpakchieva, A.Kugler, I.V.Kuznetsov, A.A.Kulko, K.A.Kuterbekov, I.N.Kukhtina, V.F.Kushniruk, S.P.Lobastov, V.K.Lukyanov, S.M.Lukyanov, V.A.Maslov, L.Mikhailov, Yu.E.Penionzhkevich, I.Skwirczynska, N.K.Skobelev, W.H.Trzaska, V.Yu.Ugryumov

Energy dependence of total reaction cross section for 4, 6He, 7Li + 28Si interaction at E=5-50 Mev/nucleon

NUCLEAR REACTIONS 28Si(α, X), (6He, X), (7Li, X), E=5-50 MeV/nucleon; measured reaction σ.

Data from this article have been entered in the EXFOR database. For more information, access X4 datasetF1309.


2005UG01      Yad.Fiz. 68, 17 (2005); Phys.Atomic Nuclei 68, 16 (2005)

V.Yu.Ugryumov, I.V.Kuznetsov, E.Bialkowski, A.Kugler, K.A.Kuterbekov, I.N.Kuhtina, V.F.Kushniruk, V.G.Lyapin, V.A.Maslov, Yu.E.Penionzhkevich, Yu.G.Sobolev, W.Trzaska, G.P.Tyurin, S.V.Khlebnikov, S.Yamaletdinov

Energy Dependence of the Total Cross Section for the Reaction of 4He Ions with Silicon Nuclei

NUCLEAR REACTIONS 28Si(α, X), E=4-25 MeV; measured reaction σ; deduced optical potential parameters.

doi: 10.1134/1.1858553
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetF0773.


2004GO03      Phys.Rev. C 69, 024602 (2004)

V.Z.Goldberg, G.V.Rogachev, W.H.Trzaska, J.J.Kolata, A.Andreyev, C.Angulo, M.J.G.Borge, S.Cherubini, G.Chubarian, G.Crowley, P.Van Duppen, M.Gorska, M.Gulino, M.Huyse, P.Jesinger, K.-M.Kallman, M.Lattuada, T.Lonnroth, M.Mutterer, R.Raabe, S.Romano, M.V.Rozhkov, B.B.Skorodumov, C.Spitaleri, O.Tengblad, A.Tumino

Investigation of the α-cluster structure of 22Ne and 22Mg

NUCLEAR REACTIONS 4He(18O, 18O), E < 80 MeV; 4He(18Ne, 18Ne), E < 53 MeV; measured σ(θ), excitation functions. 22Ne deduced resonance energies, J, π, widths, α-cluster features. 22Mg deduced level energies, J, α-cluster features. Thick-target inverse kinematics method.

doi: 10.1103/PhysRevC.69.024602
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetD0352.


2004IT05      Nucl.Phys. A734, 136 (2004)

M.G.Itkis, J.Aysto, S.Beghini, A.A.Bogachev, L.Corradi, O.Dorvaux, A.Gadea, G.Giardina, F.Hanappe, I.M.Itkis, M.Jandel, J.Kliman, S.V.Khlebnikov, G.N.Kniajeva, N.A.Kondratiev, E.M.Kozulin, L.Krupa, A.Latina, T.Materna, G.Montagnoli, Yu.Ts.Oganessian, I.V.Pokrovsky, E.V.Prokhorova, N.Rowley, V.A.Rubchenya, A.Ya.Rusanov, R.N.Sagaidak, F.Scarlassara, A.M.Stefanini, L.Stuttge, S.Szilner, M.Trotta, W.H.Trzaska, D.N.Vakhtin, A.M.Vinodkumar, V.M.Voskresensky, V.I.Zagrebaev

Shell effects in fission and quasi-fission of heavy and superheavy nuclei

NUCLEAR REACTIONS 204Pb(12C, X), 144,154Sm, 168Er, 208Pb, 238U, 244Pu, 248Cm(48Ca, X), 208Pb, 244Pu, 248Cm(58Fe, X), 186W, 242Pu(64Ni, X), E* ≈ 30-50 MeV; calculated fission fragment kinetic energy and mass distributions, neutron and γ multiplicities; deduced shell effects in fission and quasi-fission processes.

doi: 10.1016/j.nuclphysa.2004.01.022
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2004KN02      Nucl.Phys. A734, E25 (2004)

G.N.Kniajeva, L.Krupa, A.A.Bogachev, G.G.Chubarian, O.Dorvaux, I.M.Itkis, M.G.Itkis, J.Kliman, S.Khlebnikov, N.A.Kondratiev, E.Kozulin, V.Lyapin, T.Materna, I.V.Pokrovsky, V.A.Rubchenya, W.H.Trzaska, D.Vakhtin, V.M.Voskressenski

Neutron and gamma-ray emission in the proton induced fission of 238U and 242Pu

NUCLEAR REACTIONS 242Pu, 238U(p, F), E=13, 20, 55 MeV; measured En, Eγ, prescission and postscission neutron and γ-ray multiplicities, fission fragment mass distributions, kinetic energy spectra.

doi: 10.1016/j.nuclphysa.2004.03.011
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2004MU18      Nucl.Phys. A738, 122 (2004)

M.Mutterer, Yu.N.Kopatch, P.Jesinger, A.M.Gagarski, F.Gonnenwein, J.v.Kalben, S.G.Khlebnikov, I.Kojouharov, E.Lubkiewicz, Z.Mezentseva, V.Nesvizhevsky, G.A.Petrov, H.Schaffner, H.Scharma, D.Schwalm, P.Thirolf, W.H.Trzaska, G.P.Tyurin, H.-J.Wollersheim

Recent Experimental Studies on Particle-Accompanied Fission

RADIOACTIVITY 252Cf(SF); measured light charged particle spectra, yields in particle-accompanied fission.

NUCLEAR REACTIONS 233,235U(n, F), E=thermal; measured light charged particle spectra, yields in particle-accompanied fission.

doi: 10.1016/j.nuclphysa.2004.04.020
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2004PO17      J.Phys.Condens.Matter 16, 7663 (2004)

L.E.Porter, W.H.Trzaska, J.Raisanen, V.Lyapin

Stopping powers of havar for 0.63-5.9 MeV protons and 2.6-24 MeV alpha particles

NUCLEAR REACTIONS Be, C, Cr, Mn, Fe, Co, Ni, Mo, W(p, p'), E=0.63-5.9 MeV; Be, C, Cr, Mn, Fe, Co, Ni, Mo, W(α, α'), E=2.6-24 MeV; measured transmission spectra; deduced stopping powers in havar.

doi: 10.1088/0953-8984/16/43/009
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2004PY01      Yad.Fiz. 67, 1754 (2004); Phys.Atomic Nuclei 67, 1726 (2004)

Yu.V.Pyatkov, V.V.Pashkevich, W.H.Trzaska, G.G.Adamian, N.V.Antonenko, D.V.Kamanin, V.A.Maslov, V.G.Tishchenko, A.V.Unzhakova

Nontrivial Manifestation of Clustering in Fission of Heavy Nuclei at Low and Middle Excitations

NUCLEAR REACTIONS 233U(n, F), E=thermal; analyzed fission fragments total kinetic energy, charge, and mass distributions; deduced fine structure, cluster effects, related fission mechanism features.

doi: 10.1134/1.1806914
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2004RO42      Nucl.Phys. A746, 229c (2004)

G.V.Rogachev, A.Aprahamian, F.D.Becchetti, P.Boutachkov, Y.Chen, G.Chubarian, P.A.DeYoung, A.Fomichev, V.Z.Goldberg, M.S.Golovkov, J.J.Kolata, Yu.Ts.Oganessian, G.F.Peaslee, M.Quinn, A.Rodin, B.B.Skorodumov, R.S.Slepnev, G.Ter-Akopian, W.H.Trzaska, A.Wohr, R.Wolski

Structure of exotic 7He and 9He

NUCLEAR REACTIONS 1H(6He, n), E(cm) ≈ 1-3.3 MeV; 1H(8He, 8He), E* ≈ 15-20 MeV; measured σ(θ), excitation functions. 7,9Li, 7,9He deduced IAS features.

doi: 10.1016/j.nuclphysa.2004.09.036
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2004RU04      Nucl.Phys. A734, 253 (2004)

V.A.Rubchenya, W.H.Trzaska, I.M.Itkis, M.G.Itkis, J.Kliman, G.N.Kniajeva, N.A.Kondratiev, E.M.Kozulin, L.Krupa, I.V.Pokrovsky, V.M.Voskressensky, F.Hanappe, T.Materna, O.Dorvaux, L.Stuttge, G.Chubarian, S.V.Khlebnikov, D.N.Vakhtin, V.G.Lyapin

Fission dynamics in the proton induced fission of heavy nuclei

NUCLEAR REACTIONS 242Pu(p, F), E=13, 20, 55 MeV; measured fission fragment mass distributions, kinetic energies, neutron multiplicities, σ(E, θ). Multi-parameter correlation analysis.

doi: 10.1016/j.nuclphysa.2004.01.047
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2004SW02      Int.J.Mod.Phys. E13, 315 (2004)

L.Swiderski, P.Czosnyka, M.Kowalczyk, E.Piasecki, K.Piasecki, M.Witecki, J.Jastrzebski, A.Kordyasz, M.Kisielinski, T.Krogulski, N.Rowley, C.Marchetta, A.Pagano, M.Mutterer, W.H.Trzaska, K.Hagino

How many fusion barriers?

NUCLEAR REACTIONS 112,116,118Sn(20Ne, X), E=64-88 MeV; measured quasi-elastic scattering excitation functions; deduced fusion barrier distributions. Comparison with model predictions.

doi: 10.1142/S0218301304002119
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2004TR09      Nucl.Phys. A734, E33 (2004)

S.P.Tretyakova, A.A.Ogloblin, R.N.Sagaidak, S.V.Khlebnikov, W.Trzaska

Study of nucleus-nucleus potential by combined measurement of deep sub-barrier fusion and cluster decay

NUCLEAR REACTIONS 208Pb(16O, X), E(cm)=60-85 MeV; analyzed fusion, fission, and evaporation residue σ, barrier distributions; deduced nucleus-nucleus potential features. Use of cluster-decay data discussed.

doi: 10.1016/j.nuclphysa.2004.03.013
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2004TR10      Nucl.Phys. A738, 487 (2004)

S.P.Tretyakova, A.A.Ogloblin, R.N.Sagaidak, W.Trzaska, S.V.Khlebnikov, R.Julin, J.Perkowski

Study of extremely deep subbarrier 22Ne + 208Pb fusion-fission and evidence for alpha-decay-like mechanism of 230U cluster radioactivity

NUCLEAR REACTIONS 208Pb(22Ne, F), E=90-145 MeV; measured fission σ; deduced nuclear potential features. 230U deduced cluster decay mechanism.

doi: 10.1016/j.nuclphysa.2004.04.093
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2003AA02      Radiochim.Acta 91, 557 (2003)

J.Aaltonen, P.Dendooven, E.A.Gromova, S.-J.Heselius, V.A.Jakovlev, W.H.Trzaska

Production of 235Np, 236Pu and 237Pu via nuclear reactions on 235, 236, 238U and 237Np targets

NUCLEAR REACTIONS 235,236,238U, 237Np(p, X), (3He, X)235Np/236Pu/237Pu, E ≈ 15-60 MeV; compiled, analyzed σ, thick target yields.

doi: 10.1524/ract.91.10.557.22475
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Data from this article have been entered in the EXFOR database. For more information, access X4 datasetO1354.


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